Fluorescent lamp, process for its production and phosphor used therefor.
Abstract
A process for producing a fluorescent lamp, which comprises coating on an inner wall of a glass tube having a diameter of from 18 to 29 mm a phosphor slurry comprising an europium-activated yttrium oxide red-emitting phosphor, a cerium- and terbium-activated lanthanum phosphate green-emitting phosphor and an europium-activated alkaline earth metal aluminate blue-emitting phosphor of the formula: (Bal-x-yEuxMy)O·a(Mgl-pZnp)O·bAl₂O₃ wherein M is at least one member selected from the group consisting of Sr and Ca, and a, b, x, y and p are numbers within the following ranges: (16/9) < a ≦ (1/4) b + 1, (16/9) a + (16/9) ≦ b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3, in weight ratios within ranges of from 15 to 70% by weight of the red-emitting phosphor, from 20 to 65% by weight of the green-emitting phosphor and from 5 to 40% by weight of the blue-emitting phosphor, followed by drying and firing to form a fluorescent layer.

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9 claims: 3 independent, 6 dependent
- 1A process for producing a fluorescent lamp, which comprises coating on an inner wall of a glass tube having a diameter of from 18 to 29 mm a phosphor slurry scomprising an europium-activated yttrium oxide red-emitting phosphor, a cerium- and terbium-activated lanthanum phosphate green-emitting phosphor and an europium-activated alkaline earth metal aluminate blue-emitting phosphor of the formula:(Bal-x-yEuxMy)O·a(Mgl-pZnp)O·bAl₂O₃ wherein M is at least one member selected from the group consisting of Sr and Ca, and a, b, x, y and p are numbers within the following ranges: (16/9) < a ≦ (1/4) b + 1, (16/9) a + (16/9) ≦ b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3, in weight ratios within ranges of from 15 to 70% by weight of the red-emitting phosphor, from 20 to 65% by weight of the green-emitting phosphor and from 5 to 40% by weight of the blue-emitting phosphor, followed by drying and firing to form a fluorescent layer.
- 2A three band fluorescent lamp having a fluorescent layer formed of a phosphor mixture comprising an europium-activated yttrium oxide red-emitting phosphor, a cerium- and terbium-activated lanthanum phosphate green-emitting phosphor and an europium-activated alkaline earth metal aluminate blue-emitting phosphor of the formula:(Bal-x-yEuxMy)O·a(Mgl-pZnp)O·bAl₂O₃ wherein M is at least one element selected from the group consisting of Sr and Ca, and a, b, x, y and p are numbers within the following ranges: (16/9) < a ≦ (1/4) b + 1, (16/9) a + (16/9) ≦ b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3, in weight ratios within ranges of from 15 to 70% of the red-emitting phosphor, from 20 to 65% by weight of the green-emitting phosphor and from 5 to 40% by weight of the blue-emitting phosphor.
- 5An europium-activated alkaline earth metal aluminate phosphor of the formula:(Bal-x-yEuxMIIy)O·a(Mgl-pZnp)O·bAl₂O₃ wherein MII is at least one element selected from the group consisting of Sr and Ca, and a, b, x, y and p are numbers within the following ranges: 16/9 < a ≦ (1/4) b + 1, (16/9) a + 16/9 ≦ b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3.
Independent claims3
57 paragraphs in 9 sections, as filed
The present invention relates to a three band fluorescent lamp, a process for its production and a phosphor useful therefor.
In recent years, three band fluorescent lamps have been developed in the field of common fluorescent lamps for illumination, and some of them have been practically employed. The phosphor to be used for lamps of this type is a mixture obtained by mixing three types of phosphors i.e. red-, green- and blue-emitting phosphors in suitable proportions.
Here, it is common to employ an europium-activated yttrium oxide phosphor (Y₂O₃:Eu; abbreviated by YOX) as the red-emitting phosphor and a cerium- and terbium-activated lanthanum phosphate phosphor (LaPO₄:Ce,Tb; abbreviated by LAP) as the green-emitting phosphor, particularly in Japan. As the blue-emitting phosphor, it is common to employ an europium-activated barium magnesium aluminate phosphor (BAM) or an alkaline earth metal chlorophosphate phosphor containing strontium as the main alkaline earth metal (SCA).
Such three band fluorescent lamps are known to undergo a color shifting phenomenon if the decrease in the optical outputs during the illumination of the lamps and the change in the emittion colors are substantial with respect to the respective phosphors so that the balance of the optical outputs and the emittion colors among the phosphors is broken.
As the blue-emitting phosphor for such fluorescent lamps, a bivalent europium-activated aluminated phosphor [(Ba,Eu)O·2MgO·8Al₂O₃] (Japanese Examined Patent Publication No. 22836/1977) was frequently used by virtue of its high luminous efficiency, but it had a drawback that the change in the emittion color was substantial. As other bivalent europium-activated aluminated phosphors, (Ba<sub>3-a-b</sub>EU<sub>a</sub>MI<sub>b</sub>)O₃·<sub>x</sub>MIIO·<sub>y</sub>Al₂O₃ wherein MI is Sr, Ca, Pb, etc., and MII is Mg or Zn (Japanese Unexamined Patent Publication No. 25891/1986) or (Ba<sub>1-a-b</sub>Mg<sub>a</sub>Eu<sub>b</sub>)O·<sub>x</sub>MIIIO₂·<sub>y</sub>Al₂O₃, wherein MIII is Ti, Zr, Hf, etc. (Japanese Unexamined Patent Publication No. 96283/1989) are known, but they have the same drawback. Further, a bivalent europium- and bivalent manganese-activated aluminate phosphor (Japanese Examined Patent Publication No. 22836/1977) is also known. However, this is a phosphor having a manganese-activated green color as the main emission and emitting a bluish green color.
Therefore, this phosphor can not be employed as the blue-emitting component for the three band fluorescent lamp.
The above fluorescent lamps have a drawback that their optical outputs tend to decrease as time passes and their emittion colors are likely to change, thus leading to color shift.
In particular, a fluorescent lamp wherein BAM is employed as the blue-emitting phosphor, tends to have substantial color shift, although it is superior in the luminous flux to the one wherein SCA is employed. Under these circumstances, it has been proposed to use BAM and SCA in combination, but no adequate properties have been obtained.
It is an object of the present invention to solve the above problems and to provide a three band fluorescent lamp having minimum color shift.
It is another object of the present invention to overcome the above-mentioned drawbacks in the blue emitting phosphor for a three band fluorescent lamp and to provide a bivalent europium-activated aluminate phosphor having a minimum change in the emission color when the lamp is on.
The present invention provides a process for producing a fluorescent lamp, which comprises coating on an inner wall of a glass tube having a diameter of from 18 to 29 mm a phosphor slurry comprising an europium-activated yttrium oxide red-emitting phosphor, a cerium- and terbium-activated lanthanum phosphate green-emitting phosphor and an europium-activated alkaline earth metal aluminate blue-emitting phosphor of the formula: (Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sub>y</sub>)O·a(Mg<sub>l-p</sub>Zn<sub>p</sub>)O·bAl₂O₃ wherein M is at least one member selected from the group consisting of Sr and Ca, and a, b, x, y and p are numbers within the following ranges: (16/9) < a ≦ (1/4) b + 1, (16/9) a + (16/9) < b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3, in weight ratios within ranges of from 15 to 70% by weight of the red-emitting phosphor, from 20 to 65% by weight of the green-emitting phosphor and from 5 to 40% by weight of the blue-emitting phosphor, followed by drying and firing to form a fluorescent layer.
The present invention also provides a three band fluorescent lamp having a fluorescent layer formed of a phosphor mixture comprising an europium-activated yttrium oxide red-emitting phosphor, a cerium- and terbium-activated lanthanum phosphate green-emitting phosphor and an europium-activated alkaline earth metal aluminate blue-emitting phosphor of the formula: (Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sub>y</sub>)O·a(Mg<sub>l-p</sub>Zn<sub>p</sub>)O·bAl₂O₃ wherein M, a, b, x, y and p are as defined above: (16/9) < a ≦ (1/4) b + 1, (16/9) a + (16/9) ≦ b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3, in weight ratios within ranges of from 15 to 70% of the red-emitting phosphor, from 20 to 65% by weight of the green-emitting phosphor and from 5 to 40% by weight of the blue-emitting phosphor.
The above red-emitting phosphor, the green-emitting phosphor and the blue-emitting phosphor are preferably adjusted to have average particle sizes of from 2.5 to 6 µm, from 2 to 5.5 µm and from 5.5 to 7.5 µm, respectively.
Further, the present invention provides an europium-activated alkaline earth metal aluminate phosphor of the formula: (Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sup>II</sup><sub>y</sub>)O·a(Mg<sub>l-p</sub>Zn<sub>p</sub>)O·bAl₂O₃ wherein M<sup>II</sup> is at least one element selected from the group consisting of Sr and Ca, and a, b, x, y and p are numbers within the following ranges: 16/9 < a ≦ (1/4) b + 1, (16/9) a + 16/9 ≦ b ≦ (3/2) a + 4 0.03 ≦ x ≦ 0.4, 0 ≦ y ≦ 0.4, 0.03 ≦ x + y ≦ 0.4, 0 ≦ p ≦ 0.3.
In the above formula, x, y and p are preferably 0.03 ≦ x ≦ 0.25, 0 ≦ y ≦ 0.1 and 0 ≦ p ≦ 0.05, respectively.
By employing the above construction, the present invention is capable of presenting a three band fluorescent lamp having little color shift with time.
Further, by employing the above construction, the present invention is capable of presenting a blue-emitting phosphor exhibiting high emission luminance under excitation with an ultraviolet ray of 254 nm and little change in the emittion colors.
In the accompanying drawing, Figure 1 is a ternary constitution diagram wherein (Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sup>II</sup><sub>y</sub>)O is represented by oxide A, (Mg<sub>1-p</sub>Zn<sub>p</sub>)O is represented by oxide B, and Al₂O₃ is represented by oxide C.
The present inventors have investigated the cause for color shift principally with respect to three band fluorescent lamps wherein a BAM phosphor is employed which is excellent in the luminous flux as the blue-emitting phosphor, and have found: <ul id="ul0001" list-style="none"><li>(1) The color balance is likely to be broken because the deterioration rate of the quantum efficiency of the blue-emitting phosphor is large as compared with two types of other phosphors;</li><li>(2) The emittion color of the blue-emitting phosphor itself changes with time; and</li><li>(3) Mercury in the fluorescent lamp is absorbed by a phosphor having a small particle size, particularly by a blue-emitting phosphor having a small particle size and is converted to mercury oxide which absorbs blue color light.</li></ul>
Further, it had been found that the color shift of the BAM phosphor is primarily due to the cause of item (2) among these.
From a further study, it has been found that only an europium-activated alkaline earth aluminate phosphor having a very limited composition shows a minimum change in the emission color of the phosphor itself with respect to item (2). The above object has been accomplished by using this blue-emitting phosphor together with a (YOX) red-emitting phosphor and a (LAP) green-emitting phosphor in a limited mixing ratio.
Figure 1 shows the ternary constitution diagram of an europium-activated alkaline earth metal aluminated phosphor. Here, oxide A represents (Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sub>y</sub>)O and is the one wherein a part of Ba is replaced by an activator Eu and M representing Sr or Ca. It is necessary to maintain the emission color by adjustment such that at least 60 mol% in oxide A is constituted by BaO. Further, it is necessary to secure the emission luminance by adjustment such that at least 3 mol% in oxide A is constituted by EuO. If EuO exceeds 40 mol%, it tends to be difficult to obtain an improvement of the emission luminance. From the economical viewpoint, it is preferably at most 25 mol%. Namely, 0.03 ≦ x ≦ 0.4, and 0.03 ≦ x + y ≦ 0.4, particularly preferably 0.03 ≦ x ≦ 0. 25, and 0 ≦ y ≦ 0.1.
Oxide B represents (Mg<sub>l-p</sub>Zn<sub>p</sub>)O and is the one wherein a part of Mg is replaced by Zn. It is necessary to secure the emission luminance by adjustment such that at least 70 mol% of oxide B is constituted by MgO. Namely, 0 ≦ p ≦ 0.3, particularly 0 ≦ p ≦ 0.05, is preferred.
Optionally a little amount of Mg can be substituted by Mn as a co-activator.
Oxide C represents Al₂O₃.
When oxide A is 1 mol, it is possible to prevent a color shift phenomenon of the emittion color due to the above item (2), by maintaining the following relations: (16/9) < a ≦ (1/4) b + 1 (16/9) a + 16/9 ≦ b ≦ (3/2) a + 4 where a is the molar amount of oxide B and b is the molar amount of oxide C.
This europium-activated alkaline earth metal aluminate phosphor has the main emission wavelength within a range of from 440 to 460 nm. To from 5 to 40% by weight of this blue-emitting phosphor, from 30 to 65% by weight of LAP green-emitting phosphor having the main emission wavelength within a range of from 540 to 550 nm and from 15 to 70% by weight of YOX red-emitting phosphor having the main emission wavelength within a range of sfrom 605 to 615 nm are blended to obtain a phosphor mixture. This phosphor mixture is coated on the inner wall of a glass tube to form a fluorescent layer, whereby it is possible to obtain a three band fluorescent lamp having a small possibility of color shift with time.
Further, it is possible to control the cause (3) for the color shift by adjusting the average particles sizes of the red-emitting phosphor, the green-emitting phosphor and the blue-emitting phosphor within ranges of from 2.5 to 6 µm, from 2 to 5.5 µm and from 5.5 to 7.5 µm, respectively.
The degree of color shift is represented by the following equation: ds = {(x<sub>f</sub>-x<sub>i</sub>)² + (y<sub>f</sub>-y<sub>i</sub>)²}<sup>1/2</sup> where the emission color during the initial stage (100 hours after illumination) of the fluorescent lamp is represented by (x<sub>i</sub>, y<sub>i</sub>) on the CIE standard chromaticity diagram, and the emission color after illumination for 1,000 hours is represented by (x<sub>f</sub>, y<sub>f</sub>). The smaller the value of ds, the smaller the color shift.
The phosphor of the present invention can be prepared as follows:
As raw materials for the phosphor, predetermined amounts of (1) a barium compound such as barium oxide, barium hydroxide or barium carbonate, (2) a magnesium compound such as magnesium oxide, magnesium hydroxide or basic magnesium carbonate, (3) a strontium compound such as strontium oxide, strontium hydroxide or strontium carbonate, (4) a calcium compound such as calcium oxide, calcium hydroxide or calcium carbonate, (5) a zinc compound such as zinc oxide, zinc hydroxide or basic zinc carbonate, (6) an aluminum compound such as aluminum oxide or aluminum hydroxide, (7) an europium compound such as europium oxide or europium fluoride, and (8) optionally a manganese compound such as manganese oxide, manganese hydroxide or manganese carbonate, are weighed, and a flux such as barium fluoride, magnesium fluoride or aluminum fluoride is incorporated thereto. Then, the raw material mixture is thoroughly mixed. This mixture is filled in a heat resistant container such as a crucible and fired at a temperature of from 1,200 to 1,500°C. The fired product thus obtained is pulverized and mixed, and again filled in a heat resistant container and fired in a weakly reducing atmosphere at a temperature of from 1,200 to 1,500°C for from 2 to 5 hours. This fired product is pulverized, washed with water, dried and sieved to obtain a blue-emitting aluminate phosphor of the present invention.
In the present invention, a phosphor slurry comprising the above-mentioned red-emitting phosphor, the green-emitting phosphor and the blue-emitting phosphor of the present invention in weight ratios within ranges of from 15 to 70% by weight of the red-emitting phosphor, sfrom 20 to 65% by weight of the green-emitting phosphor and from 5 to 40% by weight of the blue-emitting phosphor, is prepared. This slurry is coated on the inner wall of a glass tube, then dried and fired to form a fluorescent layer, and a fluorescent lamp is prepared in a well known method. Here, the glass tube preferably has a tubular diameter within a range of from 18 to 29 mm. It is advisable to coat the phosphor slurry in an amount within a range of from 1 to 6.5 mg/cm².
Now, the present invention will be described in further detail with reference to Examples. However, it should be understood that the present invention is by no means restricted to such specific Examples.
EXAMPLES 1 TO 6
(Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sub>y</sub>)O·a(Mg<sub>l-p</sub>Zn<sub>p</sub>)O·bAl₂O₃ blue-emitting phosphor, LaPO₄:Ce,Tb green-emitting phosphor and Y₂O₃:Eu red-emitting phosphor were mixed in the proportions as identified in Table 1, and the mixture was added to a butyl acetate solution of nitrocellulose to obtain a phosphor slurry. The phosphor slurry was coated on the inner wall of a glass tube to obtain a straight tubular slim line fluorescent lamp FSL64T6. The composition of the blue-emitting phosphor was as shown in Table 1. Then, the emission colors upon expiration of 100 hours and 1,000 hours after illumination were measured to obtain color shift ds.
On the other hand, a lamp was prepared in a similar manner by using a phosphor wherein the value for a or b in the composition of the blue-emitting phosphor is outside the scope of the present invention, and the emission colors were measured as a Comparative Example.
The results are shown in Table 1. As is apparent from Table 1, with lamps wherein blue-emitting phosphors of the present invention were employed, the color shift was substantially smaller than the lamps of the Comparative Examples. <tables id="tabl0001" num="0001"><table frame="all"><title>Table 1</title><tgroup cols="10" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="15.75mm" /><colspec colnum="2" colname="col2" colwidth="15.75mm" /><colspec colnum="3" colname="col3" colwidth="15.75mm" /><colspec colnum="4" colname="col4" colwidth="15.75mm" /><colspec colnum="5" colname="col5" colwidth="15.75mm" /><colspec colnum="6" colname="col6" colwidth="15.75mm" /><colspec colnum="7" colname="col7" colwidth="15.75mm" /><colspec colnum="8" colname="col8" colwidth="15.75mm" /><colspec colnum="9" colname="col9" colwidth="15.75mm" /><colspec colnum="10" colname="col10" colwidth="15.75mm" /><thead valign="top"><row rowsep="1"><entry namest="col1" nameend="col1" rowsep="0" /><entry namest="col2" nameend="col2" rowsep="0" align="left">Blue-emitting phosphor</entry><entry namest="col3" nameend="col5" align="center">Proportions of phosphors (%)</entry><entry namest="col6" nameend="col7" align="center">Chromaticity after 100 hrs</entry><entry namest="col8" nameend="col9" align="center">Chromaticity after 100 hrs</entry><entry namest="col10" nameend="col10" align="center">Color shift</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" /><entry namest="col2" nameend="col2" /><entry namest="col3" nameend="col3" align="center">Blue</entry><entry namest="col4" nameend="col4" align="center">Green</entry><entry namest="col5" nameend="col5" align="center">Red</entry><entry namest="col6" nameend="col6" align="center">x<sub>i</sub></entry><entry namest="col7" nameend="col7" align="center">y<sub>i</sub></entry><entry namest="col8" nameend="col8" align="center">x<sub>f</sub></entry><entry namest="col9" nameend="col9" align="center">y<sub>f</sub></entry><entry namest="col10" nameend="col10" align="center">ds</entry></row></thead><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">Example 1</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.88</sub>Eu<sub>0.12</sub>)O·3.0MgO·8.5Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3484</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3676</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3516</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3702</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0041</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 2</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·6.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3461</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3647</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3483</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3656</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0023</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 3</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.5MgO·6.5Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3471</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3662</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3494</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3705</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0049</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 4</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.6MgO·6.4Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3338</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3462</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3360</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3490</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0036</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 5</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·6.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">30</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">30</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3203</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3423</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3224</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3444</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0030</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Example 6</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·6.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">10</entry><entry namest="col4" nameend="col4" align="right">25</entry><entry namest="col5" nameend="col5" align="right">65</entry><entry namest="col6" nameend="col6" align="char" char=".">0.4495</entry><entry namest="col7" nameend="col7" align="char" char=".">0.4013</entry><entry namest="col8" nameend="col8" align="char" char=".">0.4501</entry><entry namest="col9" nameend="col9" align="char" char=".">0.4021</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0010</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 1</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·8.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3433</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3590</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3486</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3663</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0090</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 2</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·1.5MgO·5.5Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3470</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3670</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3518</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3721</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0070</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 3</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·3.0MgO·7.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3456</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3641</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3499</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3688</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0064</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Comparative Example 4</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·5.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3463</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3700</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3516</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3762</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0082</entry></row></tbody></tgroup></table></tables>
EXAMPLES 7 TO 13
(Ba<sub>l-x-y</sub>Eu<sub>x</sub>M<sub>y</sub>)O·a(Mg<sub>l-p</sub>Zn<sub>p</sub>)O·bAl₂O₃ blue-emitting phosphor having a predetermined amount of manganese incorporated as coactivator, LaPO₄:Ce,Tb green-emitting phosphor and Y₂O₃:Eu red-emitting phosphor were mixed in the proportions as identified in Table 2, and the mixture was added to a butyl acetate solution of nitrocellulose to obtain a phosphor slurry. The phosphor slurry was coated on the inner wall of a glass tube to obtain a straight tubular slim line fluorescent lamp FSL64T6. The composition of the blue-emitting phosphor was as shown in Table 2. Then, the emission colors upon expiration of 100 hours and 1,000 hours from lighting were measured to determine the color shift ds.
On the other hand, a lamp was prepared in the same manner by using a phosphor wherein the value for a or b in the composition of the blue-emitting phosphor was outside the scope of the present invention and no manganese was contained, and the emission colors were measured as a Comparative Example.
The results are shown in Table 2. As is apparent from Table 2, with lamps wherein blue-emitting phosphors of the present invention were employed, the color drift was substantially smaller than the lamps of the Comparative Examples. <tables id="tabl0002" num="0002"><table frame="all"><title>Table 2</title><tgroup cols="10" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="15.75mm" /><colspec colnum="2" colname="col2" colwidth="15.75mm" /><colspec colnum="3" colname="col3" colwidth="15.75mm" /><colspec colnum="4" colname="col4" colwidth="15.75mm" /><colspec colnum="5" colname="col5" colwidth="15.75mm" /><colspec colnum="6" colname="col6" colwidth="15.75mm" /><colspec colnum="7" colname="col7" colwidth="15.75mm" /><colspec colnum="8" colname="col8" colwidth="15.75mm" /><colspec colnum="9" colname="col9" colwidth="15.75mm" /><colspec colnum="10" colname="col10" colwidth="15.75mm" /><thead valign="top"><row rowsep="1"><entry namest="col1" nameend="col1" rowsep="0" /><entry namest="col2" nameend="col2" rowsep="0" align="left">Blue-emitting phosphor</entry><entry namest="col3" nameend="col5" align="center">Proportions of phosphors (%)</entry><entry namest="col6" nameend="col7" align="center">Chromaticity after 100 hrs</entry><entry namest="col8" nameend="col9" align="center">Chromaticity after 100 hrs</entry><entry namest="col10" nameend="col10" align="center">Color shift</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" /><entry namest="col2" nameend="col2" /><entry namest="col3" nameend="col3" align="center">Blue</entry><entry namest="col4" nameend="col4" align="center">Green</entry><entry namest="col5" nameend="col5" align="center">Red</entry><entry namest="col6" nameend="col6" align="center">x<sub>i</sub></entry><entry namest="col7" nameend="col7" align="center">y<sub>i</sub></entry><entry namest="col8" nameend="col8" align="center">x<sub>f</sub></entry><entry namest="col9" nameend="col9" align="center">y<sub>f</sub></entry><entry namest="col10" nameend="col10" align="center">ds</entry></row></thead><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">Example 7</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.996</sub>Mn<sub>0.004</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="right">16</entry><entry namest="col4" nameend="col4" align="right">42</entry><entry namest="col5" nameend="col5" align="right">42</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3452</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3658</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3462</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3673</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0018</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 8</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>2.496</sub>Mn<sub>0.004</sub>Al₁₂O₂₃</entry><entry namest="col3" nameend="col3" align="right">16</entry><entry namest="col4" nameend="col4" align="right">42</entry><entry namest="col5" nameend="col5" align="right">42</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3338</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3462</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3350</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3477</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0019</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 9</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.999</sub>Mn<sub>0.001</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="right">16</entry><entry namest="col4" nameend="col4" align="right">42</entry><entry namest="col5" nameend="col5" align="right">42</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3451</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3647</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3463</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3673</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0029</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 10</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.998</sub>Mn<sub>0.002</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="right">16</entry><entry namest="col4" nameend="col4" align="right">42</entry><entry namest="col5" nameend="col5" align="right">42</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3441</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3624</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3452</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3637</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0017</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 11</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.98</sub>Mn<sub>0.02</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3473</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3505</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3498</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3522</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0030</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 12</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.998</sub>Mn<sub>0.002</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="right">30</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">30</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3433</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3488</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3455</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3517</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0036</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Example 13</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.998</sub>Mn<sub>0.002</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="right">10</entry><entry namest="col4" nameend="col4" align="right">25</entry><entry namest="col5" nameend="col5" align="right">65</entry><entry namest="col6" nameend="col6" align="char" char=".">0.4486</entry><entry namest="col7" nameend="col7" align="char" char=".">0.4063</entry><entry namest="col8" nameend="col8" align="char" char=".">0.4491</entry><entry namest="col9" nameend="col9" align="char" char=".">0.4077</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0015</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 5</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg<sub>1.5</sub>Al₁₁O₁₉</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3470</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3670</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3518</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3721</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0070</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Comparative Example 6</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>·Eu<sub>0.1</sub>·Mg₂Al₁₆O₂₇</entry><entry namest="col3" nameend="col3" align="right">20</entry><entry namest="col4" nameend="col4" align="right">40</entry><entry namest="col5" nameend="col5" align="right">40</entry><entry namest="col6" nameend="col6" align="char" char=".">0.3433</entry><entry namest="col7" nameend="col7" align="char" char=".">0.3590</entry><entry namest="col8" nameend="col8" align="char" char=".">0.3486</entry><entry namest="col9" nameend="col9" align="char" char=".">0.3633</entry><entry namest="col10" nameend="col10" align="char" char=".">0.0090</entry></row></tbody></tgroup></table></tables>
EXAMPLE 14
<tables id="tabl0003" num="0003"><table frame="all"><tgroup cols="2" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="78.75mm" /><colspec colnum="2" colname="col2" colwidth="78.75mm" /><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">BaCO₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.88 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">MgO</entry><entry namest="col2" nameend="col2" align="char" char=".">3.0 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">Eu₂O₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.06 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">Al₂O₃</entry><entry namest="col2" nameend="col2" align="char" char=".">8.5 mol</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">AlF₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.01 mol</entry></row></tbody></tgroup></table></tables>
The above raw material was thoroughly mixed and fired in air at 1,350°C for 3 hours. The fired product was pulverized, washed with water, dried and sieved to obtain a phosphor. The composition of this phosphor was (Ba<sub>0.88</sub>Eu<sub>0.12</sub>)O·3.0MgO·Al₂O₃ and is the one shown by reference numeral 14 in the three component state diagram in Figure 1.
This phosphor was coated on the inner wall of a glass tube to obtain a FSL64T6 lamp. After using this lamp for 1,000 hours, the phosphor was peeled off and illuminated under excitation by ultraviolet rays of 254 nm together with the phosphor before use, whereby the phosphor after use showed x = 0.146 and y = 0.065, while the phosphor before use showed x = 0.146 and y = 0.060. Thus, the change in the emission color was very small at a level of Δx = 0.000 and Δy = 0.005.
EXAMPLE 15
<tables id="tabl0004" num="0004"><table frame="all"><tgroup cols="2" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="78.75mm" /><colspec colnum="2" colname="col2" colwidth="78.75mm" /><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">BaCO₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.90 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">MgO</entry><entry namest="col2" nameend="col2" align="char" char=".">2.0 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">Eu₂O₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.05 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">Al₂O₃</entry><entry namest="col2" nameend="col2" align="char" char=".">6.0 mol</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">AlF₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.01 mol</entry></row></tbody></tgroup></table></tables>
Using the above raw material, a phosphor was prepared under the same conditions as in Example 14. The composition of the phosphor thus obtained was (Ba<sub>0.9</sub>Eu<sub>0.1</sub>)O·2MgO·6Al₂O₃ and was the one shown by reference numeral 15 in the ternary constitution diagram in Figure 1.
With respect to this phosphor, the emission color was measured in the same manner as in Example 14, whereby the phosphor after use showed x = 0.146 and y = 0.059, while the phosphor before use showed x = 0.146 and y = 0.056. Thus, the change in the emission color was very small at a level of Δx = 0.000 and Δy = 0.003.
EXAMPLES 16 TO 19
Phosphors having the compositions as identified in Table 3 were prepared under the same conditions as in Examples 14 and 15. Reference numerals 16 to 19 in the ternary constitution diagram in Figure 1 represent Examples 16 to 19, respectively, and indicate the compositions of the phosphors obtained in the respective Examples. Examples 18 and 19 represent the cases wherein a part of Ba of the phosphor of Example 15 was substituted by Sr or Ca.
With respect to these phosphors, the emission colors were measured in the same manner as in Examples 14 and 15, and the results are also shown in Table 3. As is apparent from Table 3, the phosphors of all the Examples showed small changes in the emission colors. Also with the partially substituted phosphors, the same results as with the phosphors before substitution were obtained. Thus, these phosphors were found to be useful as blue-emitting phosphors for three band fluorescent lamps.
COMPARATIVE EXAMPLES 7 TO 10
Phosphors having the compositions as identified in Table 3 were prepared under the same conditions as in Examples 14 and 15. Reference numerals 7 to 10 in the ternary constitution diagram in Figure 1 represent Comparative Examples 7 to 10, respectively, and indicate the compositions of the phosphors obtained in the respective Comparative Examples.
Also with respect to these phosphors, the emission colors were measured in the same manner as in Examples 14 and 15, and the results are shown also in Table 3. As is apparent from Table 3, with the phosphors of these Comparative Examples, the change in the emission colors is relatively large, whereby color shift is expected to be relatively large when they are used for three band fluorescent lamps. <tables id="tabl0005" num="0005"><table frame="all"><title>Table 3</title><tgroup cols="8" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="19.68mm" /><colspec colnum="2" colname="col2" colwidth="19.68mm" /><colspec colnum="3" colname="col3" colwidth="19.68mm" /><colspec colnum="4" colname="col4" colwidth="19.68mm" /><colspec colnum="5" colname="col5" colwidth="19.68mm" /><colspec colnum="6" colname="col6" colwidth="19.68mm" /><colspec colnum="7" colname="col7" colwidth="19.68mm" /><colspec colnum="8" colname="col8" colwidth="19.68mm" /><thead valign="top"><row rowsep="1"><entry namest="col1" nameend="col1" rowsep="0" /><entry namest="col2" nameend="col2" rowsep="0" align="left">Composition of phosphor</entry><entry namest="col3" nameend="col4" align="center">Emittion color before use</entry><entry namest="col5" nameend="col6" align="center">After 1,000 hrs</entry><entry namest="col7" nameend="col8" align="center">Change in emittion color</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" /><entry namest="col2" nameend="col2" /><entry namest="col3" nameend="col3" align="center">x</entry><entry namest="col4" nameend="col4" align="center">y</entry><entry namest="col5" nameend="col5" align="center">x′</entry><entry namest="col6" nameend="col6" align="center">y′</entry><entry namest="col7" nameend="col7" align="center">Δx</entry><entry namest="col8" nameend="col8" align="center">Δy</entry></row></thead><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">Example 14</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.88</sub>Eu<sub>0.12</sub>)O·3.0MgO·8.5Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.146</entry><entry namest="col4" nameend="col4" align="char" char=".">0.060</entry><entry namest="col5" nameend="col5" align="char" char=".">0.146</entry><entry namest="col6" nameend="col6" align="char" char=".">0.065</entry><entry namest="col7" nameend="col7" align="char" char=".">0.000</entry><entry namest="col8" nameend="col8" align="char" char=".">0.005</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 15</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·6.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.146</entry><entry namest="col4" nameend="col4" align="char" char=".">0.056</entry><entry namest="col5" nameend="col5" align="char" char=".">0.146</entry><entry namest="col6" nameend="col6" align="char" char=".">0.059</entry><entry namest="col7" nameend="col7" align="char" char=".">0.000</entry><entry namest="col8" nameend="col8" align="char" char=".">0.003</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 16</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.5MgO·6.5Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.146</entry><entry namest="col4" nameend="col4" align="char" char=".">0.056</entry><entry namest="col5" nameend="col5" align="char" char=".">0.146</entry><entry namest="col6" nameend="col6" align="char" char=".">0.061</entry><entry namest="col7" nameend="col7" align="char" char=".">0.000</entry><entry namest="col8" nameend="col8" align="char" char=".">0.005</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 17</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.6MgO·6.4Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.146</entry><entry namest="col4" nameend="col4" align="char" char=".">0.058</entry><entry namest="col5" nameend="col5" align="char" char=".">0.146</entry><entry namest="col6" nameend="col6" align="char" char=".">0.064</entry><entry namest="col7" nameend="col7" align="char" char=".">0.000</entry><entry namest="col8" nameend="col8" align="char" char=".">0.006</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 18</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.81</sub>Sr<sub>0.09</sub>Eu<sub>0.10</sub>)O·2.0MgO·6.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.144</entry><entry namest="col4" nameend="col4" align="char" char=".">0.072</entry><entry namest="col5" nameend="col5" align="char" char=".">0.144</entry><entry namest="col6" nameend="col6" align="char" char=".">0.075</entry><entry namest="col7" nameend="col7" align="char" char=".">0.000</entry><entry namest="col8" nameend="col8" align="char" char=".">0.003</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Example 19</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.71</sub>Ca<sub>0.19</sub>Eu<sub>0.10</sub>)O·2.0MgO·6.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.143</entry><entry namest="col4" nameend="col4" align="char" char=".">0.078</entry><entry namest="col5" nameend="col5" align="char" char=".">0.145</entry><entry namest="col6" nameend="col6" align="char" char=".">0.084</entry><entry namest="col7" nameend="col7" align="char" char=".">0.002</entry><entry namest="col8" nameend="col8" align="char" char=".">0.006</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 7</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·8.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.144</entry><entry namest="col4" nameend="col4" align="char" char=".">0.067</entry><entry namest="col5" nameend="col5" align="char" char=".">0.152</entry><entry namest="col6" nameend="col6" align="char" char=".">0.082</entry><entry namest="col7" nameend="col7" align="char" char=".">0.008</entry><entry namest="col8" nameend="col8" align="char" char=".">0.015</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 8</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·1.5MgO·5.5Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.146</entry><entry namest="col4" nameend="col4" align="char" char=".">0.062</entry><entry namest="col5" nameend="col5" align="char" char=".">0.152</entry><entry namest="col6" nameend="col6" align="char" char=".">0.075</entry><entry namest="col7" nameend="col7" align="char" char=".">0.006</entry><entry namest="col8" nameend="col8" align="char" char=".">0.013</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 9</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·3.0MgO·7.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.148</entry><entry namest="col4" nameend="col4" align="char" char=".">0.062</entry><entry namest="col5" nameend="col5" align="char" char=".">0.153</entry><entry namest="col6" nameend="col6" align="char" char=".">0.074</entry><entry namest="col7" nameend="col7" align="char" char=".">0.005</entry><entry namest="col8" nameend="col8" align="char" char=".">0.012</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Comparative Example 10</entry><entry namest="col2" nameend="col2" align="left">(Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2.0MgO·5.0Al₂O₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.146</entry><entry namest="col4" nameend="col4" align="char" char=".">0.056</entry><entry namest="col5" nameend="col5" align="char" char=".">0.151</entry><entry namest="col6" nameend="col6" align="char" char=".">0.070</entry><entry namest="col7" nameend="col7" align="char" char=".">0.005</entry><entry namest="col8" nameend="col8" align="char" char=".">0.014</entry></row></tbody></tgroup></table></tables>
EXAMPLE 20
<tables id="tabl0006" num="0006"><table frame="all"><tgroup cols="2" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="78.75mm" /><colspec colnum="2" colname="col2" colwidth="78.75mm" /><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">BaCO₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.90 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">MgO</entry><entry namest="col2" nameend="col2" align="char" char=".">1.996 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">Eu₂O₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.05 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">MnO₂</entry><entry namest="col2" nameend="col2" align="char" char=".">0.004 mol</entry></row><row><entry namest="col1" nameend="col1" align="left">Al₂O₃</entry><entry namest="col2" nameend="col2" align="char" char=".">6.0 mol</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">AlF₃</entry><entry namest="col2" nameend="col2" align="char" char=".">0.02 mol</entry></row></tbody></tgroup></table></tables>
The above raw material was thoroughly mixed and fired in air at 1,350°C for 3 hours. The fired product was pulverized, then fired in a weakly reducing atmosphere at 1,350°C for 3 hours, followed by pulverization, washing with water, drying and sieving to obtain a phosphor. This phosphor had a composition of (Ba<sub>0.90</sub>Eu<sub>0.10</sub>)O·2(Mg<sub>0.998</sub>Mn<sub>0.002</sub>)O·6Al₂O₃, wherein Mn/Eu was 0.04.
This phosphor was coated on the inner wall of a glass tube to obtain a FSL64T6 lamp. After using the lamp for 1,000 hours, the phosphor was peeled off from the lamp and illuminated under excitation by ultraviolet rays of 254 nm together with the phosphor before use, whereby the emission color was measured. The phosphor after use showed x = 0.146 and y = 0.081, while the phosphor before use showed x = 0.146 and y = 0.079. Thus, the change in the emission color was small at a level of Δx = 0.000 and Δy = 0.002.
EXAMPLES 21 TO 27
Phosphors having the compositions as identified in Table 4 were prepared under the same conditions as in Example 20.
With respect to these phosphors, the emission colors were measured in the same manner as in Example 20, and the results are also shown in Table 4. As is apparent from Table 4, the change in the emission color was small with the phosphor of each Example. Thus, these phosphors were found to be blue-emitting phosphors useful for three band fluorescent lamps.
COMPARATIVE EXAMPLES 11 TO 13
Phosphors having the compositions as identified in Table 4 were prepared under the same conditions as in Examples 20 to 27.
Also with respect to these phosphors, the emission colors were measured in the same manner as in Example 20. The results are also shown in Table 4.
As is apparent from Table 4, the change in the emission color is relatively large, whereby color shift is expected when they are used for three band fluorescent lamps. The phosphor of Comparative Example 13 is a conventional phosphor having a composition of (Ba<sub>0.9</sub>Eu<sub>0.1</sub>)O·(Mg<sub>1.8</sub>Mn<sub>0.2</sub>)O<sub>2.0</sub>·8.0Al₂O₃ and activated by Eu and Mn, and it is a bluish green-emitting phosphor having a large peak in the vicinity of 515 nm rather than at 450 nm and therefore can not be used for a three band fluorescent lamp. <tables id="tabl0007" num="0007"><table frame="all"><title>Table 4</title><tgroup cols="9" colsep="1" rowsep="0"><colspec colnum="1" colname="col1" colwidth="17.50mm" /><colspec colnum="2" colname="col2" colwidth="17.50mm" /><colspec colnum="3" colname="col3" colwidth="17.50mm" /><colspec colnum="4" colname="col4" colwidth="17.50mm" /><colspec colnum="5" colname="col5" colwidth="17.50mm" /><colspec colnum="6" colname="col6" colwidth="17.50mm" /><colspec colnum="7" colname="col7" colwidth="17.50mm" /><colspec colnum="8" colname="col8" colwidth="17.50mm" /><colspec colnum="9" colname="col9" colwidth="17.50mm" /><thead valign="top"><row rowsep="1"><entry namest="col1" nameend="col1" rowsep="0" /><entry namest="col2" nameend="col2" rowsep="0" align="left">Composition of phosphor</entry><entry namest="col3" nameend="col3" rowsep="0" align="center">Mn/Eu</entry><entry namest="col4" nameend="col5" align="center">Emittion color before use</entry><entry namest="col6" nameend="col7" align="center">After 1,000 hrs</entry><entry namest="col8" nameend="col9" align="center">Change in emittion color</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" /><entry namest="col2" nameend="col2" /><entry namest="col3" nameend="col3" /><entry namest="col4" nameend="col4" align="center">x</entry><entry namest="col5" nameend="col5" align="center">y</entry><entry namest="col6" nameend="col6" align="center">x′</entry><entry namest="col7" nameend="col7" align="center">y′</entry><entry namest="col8" nameend="col8" align="center">Δx</entry><entry namest="col9" nameend="col9" align="center">Δy</entry></row></thead><tbody valign="top"><row><entry namest="col1" nameend="col1" align="left">Example 20</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>Eu<sub>0.1</sub>Mg<sub>1.996</sub>Mn<sub>0.004</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="char" char=".">0.04</entry><entry namest="col4" nameend="col4" align="char" char=".">0.146</entry><entry namest="col5" nameend="col5" align="char" char=".">0.079</entry><entry namest="col6" nameend="col6" align="char" char=".">0.146</entry><entry namest="col7" nameend="col7" align="char" char=".">0.081</entry><entry namest="col8" nameend="col8" align="char" char=".">0.000</entry><entry namest="col9" nameend="col9" align="char" char=".">0.002</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 21</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>Eu<sub>0.1</sub>Mg<sub>2.496</sub>Mn<sub>0.004</sub>Al₁₃O₂₃</entry><entry namest="col3" nameend="col3" align="char" char=".">0.04</entry><entry namest="col4" nameend="col4" align="char" char=".">0.146</entry><entry namest="col5" nameend="col5" align="char" char=".">0.077</entry><entry namest="col6" nameend="col6" align="char" char=".">0.146</entry><entry namest="col7" nameend="col7" align="char" char=".">0.080</entry><entry namest="col8" nameend="col8" align="char" char=".">0.000</entry><entry namest="col9" nameend="col9" align="char" char=".">0.003</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 22</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>Eu<sub>0.1</sub>Mg<sub>1.999</sub>Mn<sub>0.001</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="char" char=".">0.01</entry><entry namest="col4" nameend="col4" align="char" char=".">0.146</entry><entry namest="col5" nameend="col5" align="char" char=".">0.060</entry><entry namest="col6" nameend="col6" align="char" char=".">0.148</entry><entry namest="col7" nameend="col7" align="char" char=".">0.065</entry><entry namest="col8" nameend="col8" align="char" char=".">0.002</entry><entry namest="col9" nameend="col9" align="char" char=".">0.005</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 23</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.8</sub>Eu<sub>0.2</sub>Mg<sub>1.998</sub>Mn<sub>0.002</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="char" char=".">0.01</entry><entry namest="col4" nameend="col4" align="char" char=".">0.147</entry><entry namest="col5" nameend="col5" align="char" char=".">0.067</entry><entry namest="col6" nameend="col6" align="char" char=".">0.148</entry><entry namest="col7" nameend="col7" align="char" char=".">0.072</entry><entry namest="col8" nameend="col8" align="char" char=".">0.001</entry><entry namest="col9" nameend="col9" align="char" char=".">0.005</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 24</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.8</sub>Eu<sub>0.2</sub>Mg<sub>1.996</sub>Mn<sub>0.004</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="char" char=".">0.02</entry><entry namest="col4" nameend="col4" align="char" char=".">0.147</entry><entry namest="col5" nameend="col5" align="char" char=".">0.073</entry><entry namest="col6" nameend="col6" align="char" char=".">0.148</entry><entry namest="col7" nameend="col7" align="char" char=".">0.075</entry><entry namest="col8" nameend="col8" align="char" char=".">0.001</entry><entry namest="col9" nameend="col9" align="char" char=".">0.002</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 25</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.89</sub>Eu<sub>0.11</sub>Mg<sub>2.21</sub>Mn<sub>0.011</sub>Al<sub>13.3</sub>O<sub>23.171</sub></entry><entry namest="col3" nameend="col3" align="char" char=".">0.1</entry><entry namest="col4" nameend="col4" align="char" char=".">0.147</entry><entry namest="col5" nameend="col5" align="char" char=".">0.089</entry><entry namest="col6" nameend="col6" align="char" char=".">0.146</entry><entry namest="col7" nameend="col7" align="char" char=".">0.089</entry><entry namest="col8" nameend="col8" align="char" char=".">0.001</entry><entry namest="col9" nameend="col9" align="char" char=".">0.000</entry></row><row><entry namest="col1" nameend="col1" align="left">Example 26</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.89</sub>Eu<sub>0.11</sub>Mg<sub>2.2</sub>Mn<sub>0.022</sub>Al<sub>13.3</sub>O<sub>23.172</sub></entry><entry namest="col3" nameend="col3" align="char" char=".">0.2</entry><entry namest="col4" nameend="col4" align="char" char=".">0.147</entry><entry namest="col5" nameend="col5" align="char" char=".">0.115</entry><entry namest="col6" nameend="col6" align="char" char=".">0.148</entry><entry namest="col7" nameend="col7" align="char" char=".">0.112</entry><entry namest="col8" nameend="col8" align="char" char=".">0.001</entry><entry namest="col9" nameend="col9" align="char" char=".">0.003</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Example 27</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.8</sub>Sr<sub>0.1</sub>Eu<sub>0.1</sub>Mg<sub>1.996</sub>Mn<sub>0.004</sub>Al₁₂O₂₁</entry><entry namest="col3" nameend="col3" align="char" char=".">0.04</entry><entry namest="col4" nameend="col4" align="char" char=".">0.145</entry><entry namest="col5" nameend="col5" align="char" char=".">0.080</entry><entry namest="col6" nameend="col6" align="char" char=".">0.146</entry><entry namest="col7" nameend="col7" align="char" char=".">0.083</entry><entry namest="col8" nameend="col8" align="char" char=".">0.001</entry><entry namest="col9" nameend="col9" align="char" char=".">0.003</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 11</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>Eu<sub>0.1</sub>Mg<sub>1.5</sub>Al₁₁O₁₉</entry><entry namest="col3" nameend="col3" align="char" char=".">0</entry><entry namest="col4" nameend="col4" align="char" char=".">0.146</entry><entry namest="col5" nameend="col5" align="char" char=".">0.062</entry><entry namest="col6" nameend="col6" align="char" char=".">0.152</entry><entry namest="col7" nameend="col7" align="char" char=".">0.075</entry><entry namest="col8" nameend="col8" align="char" char=".">0.006</entry><entry namest="col9" nameend="col9" align="char" char=".">0.013</entry></row><row><entry namest="col1" nameend="col1" align="left">Comparative Example 12</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>Eu<sub>0.1</sub>Mg<sub>2.0</sub>Al₁₆O₂₇</entry><entry namest="col3" nameend="col3" align="char" char=".">0</entry><entry namest="col4" nameend="col4" align="char" char=".">0.144</entry><entry namest="col5" nameend="col5" align="char" char=".">0.067</entry><entry namest="col6" nameend="col6" align="char" char=".">0.152</entry><entry namest="col7" nameend="col7" align="char" char=".">0.082</entry><entry namest="col8" nameend="col8" align="char" char=".">0.008</entry><entry namest="col9" nameend="col9" align="char" char=".">0.015</entry></row><row rowsep="1"><entry namest="col1" nameend="col1" align="left">Comparative Example 13</entry><entry namest="col2" nameend="col2" align="left">Ba<sub>0.9</sub>Eu<sub>0.1</sub>Mg<sub>1.8</sub>Mn<sub>0.2</sub>Al₁₆O₂₇</entry><entry namest="col3" nameend="col3" align="char" char=".">2.0</entry><entry namest="col4" nameend="col4" align="char" char=".">0.142</entry><entry namest="col5" nameend="col5" align="char" char=".">0.32</entry><entry namest="col6" nameend="col6" align="char" char=".">-</entry><entry namest="col7" nameend="col7" align="char" char=".">-</entry><entry namest="col8" nameend="col8" align="char" char=".">-</entry><entry namest="col9" nameend="col9" align="char" char=".">-</entry></row></tbody></tgroup></table></tables>
Contents9
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| Search report despatchedORIGINAL CODE: 0009013PUAL | PUAL | |
| Designated contracting statesAK | AK | |
| Public reference made under article 153(3) epc to a published international application that has entered the european phaseORIGINAL CODE: 0009012PUAI | PUAI |
Numbers
- Publication
- 0418902
- Publication, DOCDB
- 0418902
- Publication, EPODOC
- EP0418902
- Application
- 90118148
- Application, DOCDB
- 90118148
- Application, EPODOC
- EP19900118148
Titles6
- German
- Fluoreszierende Lampe, Verfahren zur Herstellung desselben und gebrauchtes Phosphor.
- English
- Fluorescent lamp, process for its production and phosphor used therefor.
- French
- Lampe fluorescente, procédé pour sa fabrication et matière luminescente utilisée.
- German
- Fluoreszierende Lampe, Verfahren zur Herstellung desselben und gebrauchtes Phosphor
- English
- Fluorescent lamp, process for its production and phosphor used therefor
- French
- Lampe fluorescente, procédé pour sa fabrication et matière luminescente utilisée
Classification
- CPC, 2
- C09K11/7734
- H01J61/44
- IPC, 4
- C09K11 64
- C09K11 77
- C09K11 80
- H01J61 44
Designated states5
- Contracting states, 5
- Germany
- France
- United Kingdom
- Italy
- Netherlands (Kingdom of the)