MY164752A

Process for the preparation of coated phosphors

Abstract

The invention relates to coated phosphor particles comprising luminescent particles and a, preferably substantially transparent, metal, transition-metal or semimetal oxide coating, and to a process for the production thereof.

MY164752A, drawing sheet 1
Sheet 1 of 3

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

18 claims: 11 independent, 7 dependent

  1. 1
    CLAIMS 1. Coated phosphor particles comprising luminescent particles and a metal, transition-metal or semimetal oxide coating obtainable by mixing at least two starting materials with at ieast one dopant by wet-chemical methods 5 and subsequent calcination to give phosphor precursors, and coating with metal, transition-metal or semimetal oxides by wet-chemical methods and subsequent calcination,wherein the surface of the coated phosphor particles is porous.
  2. 3
    3, Coated phosphor particles according to one or more of Claims 1 to 2, 20 characterised in that the metal, transition-metal or semimetal oxide coating is substantially transparent.
  3. 4
    Process for the production of coated phosphor particles a. Preparation of a pre-calcined phosphor precursor suspension by mixing at least two starting materials and at least one dopant by wet-chemical methods and thermally treating the mixture at a temperature
  4. 5
    5 Ti > 150°C. b. Coating of the pre-calcined phosphor precursor suspension with a substantially transparent metal, transition-metal or semimetal oxide in a wet-chemical process at elevated temperature and subsequent calci10 nation at a temperature T2 > 800°C. c. Optionally additionally selective oxidation of suboxides at a temperature T3 < 800°C to give the corresponding metal or semimetal oxides. 15 5. Process according to Claim 4, characterised in that the substantially transparent metal, transition-metal or semimetal oxide employed is nanoparticles of aluminium oxide, zirconium oxide, zinc oxide, titanium oxide, silicon oxide or combinations thereof. 20
  5. 7
    Process according to one or more of Claims 4 to 6, characterised in that 25 the phosphor precursor is prepared by wet-chemical methods from organic and/or inorganic metal, semimetal, transition-metal and/or rare-earth metal salts by means of sol-gel processes and/or precipitation processes.
  6. 8
    8« Process according to one or more of Claims 4 to 7, characterised in that the wet-chemical preparation of the phosphor precursors is selected from one of the following 5 methods:PI 2010002049 • coprecipitation with an NH4HCO3 solution • Pecchini method using a solution of citric acid and ethylene glycol • combustion method using urea • spray-drying of the dispersed starting materials • spray pyrolysis of the dispersed starting materials.
  7. 10
    Process according to one or more of Claims 4 to 9, characterised in that the coating is carried out with at least one metal, transition-metal or semimetal oxide by addition of aqueous or non-aqueous solutions of non-volatile salts and/or organometallic compounds.
  8. 11
    Process according to one or more of Claims 4 to 10rcharacterised in that the starting materials and the dopant are inorganic and/or organic substances, such as nitrates, carbonates, hydrogencarbonates, phosphates, carboxylates, alcoholates, acetates, oxalates, halides, sulfates, organo20 metallic compounds, hydroxides and/or oxides of the metals, semimetals, transition metals and/or rare-earth metals, which are dissolved and/or sus pended in inorganic and/or organic liquids.
  9. 12
    Process according to one or more of Claims 4 toll, characterised in that 25 the phosphor particles consist of at least one of the following phosphor materials:(Y,Gd,Lu,Sc,Sm,Tb,Th,lr,Sb,Bi)3 (Al, Ga)5O12:Ce (with or without Pr), YSiO2N:Ce, Y2Si3O3N4:Ce, Gd2Si3O3N4:Ce, (Y,Gd,Tb,Lu)3Al5.xSixOi2.xNx:Ce, BaMgAI-i0Oi7:Eu (with or without Mn), SrAI2O4:Eu, Sr4Ah4O25:Eu, (Ca,Sr,Ba)Si2N2O2:Eu, SrSiAI2O3N2:Eu, 30 (Ca,Sr,Ba)2Si5N8:Eu, (Ca,Sr,Ba)SiN2:Eu, CaAISiN3:Eu, molybdates, tungstates, vanadates, group III nitrides, oxides, in each case individually or PI 2010002049 mixtures thereof with one or more activator ions, such as Ce, Eu, Mn, Cr, Tb and/or Bi.
  10. 13
    Illumination unit having at least one primary light source whose emission maximum is in the range 380 nm to 530 nm, preferably between 430 nm and 500 nm, where some or all of this radiation is converted into longerwavelength radiation by coated phosphor particles according to one or more of Claims 1 to 2.
  11. 18
    19., Use of coated phosphor particles according to one or more of Claims 1 to 3 for partial or complete conversion of the blue or near-UV emission from a luminescent diode.