Nova Patents
WO2011123727A2

Organosilicones

Abstract

The present application relates to organosilicones and compositions such as consumer products comprising such organosilicones, as well as processes for making and using such organosilicones and such compositions. Such compositions comprising such organosilicones are easier to formulate, and provide more economical and superior care benefits when compared to current silicone containing compositions.

WO2011123727A2, drawing sheet 1
Sheet 1 of 114

Term

No projected expiry on record.

  1. Priority
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12 claims: 4 independent, 8 dependent

  1. 1
    CLAIMS What is claimed is:1. A composition comprising, based on total composition weight: a) from 0.1% to 50%, preferably from 0.5% to 30%, more preferably from 1% to 20% of a surfactant selected from the group consisting of anionic, cationic, amphoteric, zwitterionic, nonionic surfactants, and combinations thereof;and b) from 0.01% to 20%, preferably from 0.1% to 10%, more preferably from 0.2% to 8% of a random or blocky organosilicone polymer having the following formula: [RiR 2 R3SiOi /2 ] ( j +2) [(R4Si(X-Z)0 2/2 ] k [R4R4Si0 2/2 ] m [R 4 Si03/ 2 ]j wherein: j is an integer from 0 to 98;preferably j is an integer from 0 to 48;more preferably, j is 0;k is an integer from 0 to 200, preferably k is an integer from 0 to 50;when k = 0, at least one of Ri R 2 or R 3 is -X— Z;m is an integer from 4 to 5,000;preferably m is an integer from 10 to 4,000;more preferably m is an integer from 50 to 2,000;Ri, R 2 and R3 are each independently selected from the group consisting of H, OH, Ci-C 32 alkyl, Ci-C 32 substituted alkyl, C5-C 32 or C 6 -C 32 aryl, C5-C 32 or C 6 -C 32 substituted aryl, C 6 -C 32 alkylaryl, C 6 -C 32 substituted alkylaryl, Ci-C 32 alkoxy, Ci-C 32 substituted alkoxy and X-Z;each R4 is independently selected from the group consisting of H, OH, Ci-C 32 alkyl, d-C 32 substituted alkyl, C 5 -C 32 or C 6 -C 32 aryl, C5-C 32 or C 6 -C 32 substituted aryl, C 6 -C 32 alkylaryl, C 6 -C 32 substituted alkylaryl, Ci-C 32 alkoxy and Ci-C 32 substituted alkoxy;each X comprises a substituted or unsubstituted divalent alkylene radical comprising 2-12 carbon atoms, preferably each divalent alkylene radical is independently selected from the group consisting of -(CH 2 ) S - wherein s is an integer from 2 to 8, preferably s is an integer from 2 to 4;more preferably each divalent alkylene radical is independently selected from the group consisting of -CH 2 -CH(OH)-CH 2 -;-CH 2 -CH 2 -CH(OH)-;and CH 3 I — CH 2 -CH-CH 2 — . each Z is selected independently from the group consisting of Q Q N-Q (A Q Q I — N-Q, Q — N— X— N— Q 5 A n" )l/n and with the proviso that when Z is a quat, Q cannot be an amide, imine, or urea moiety and if Q is an amide, imine, or urea moiety, then any additional Q bonded to the same nitrogen as said amide, imine, or urea moiety must be H or a Ci-C alkyl, preferably said additional Q is H;A n" is a suitable charge balancing anion, preferably A n~ is selected from the group consisting of CI " , ΒΓ ,Γ, methylsulfate, toluene sulfonate, carboxylate and phosphate ;and at least one Q in said organosilicone is independently selected from -CH 2 -CH(OH)-CH 2 -R 5 ;0 o O R 5 o II II ii ii — C-R 5 .— C-O— R 5 -— C— CH-C-Rv o R 5 O II / II P— O R 5 0 H ==\ P— R, I II I V I O R 5 C N-R 5;5 . R 5 . . CH 2 OT I CH CH 2 — R 5 each additional Q in said organosilicone is independently selected from the group comprising of H, C1-C32 alkyl, C1-C32 substituted alkyl, C 5 -C 32 or C 6 -C 32 aryl, C 5 -C 32 or C 6 -C 32 substituted aryl, C 6 -C 32 alkylaryl, C 6 -C 32 substituted alkylaryl, -CH 2 -CH(OH)-CH 2 -R 5 ;OT C , H - 7 OT — CH 2 — CH-CH 2 -R 5 and CH — CH 2 — R 5 wherein each R 5 is independently selected from the group consisting of H, C 1 -C 3 2 alkyl, C 1 -C32 substituted alkyl, C5-C32 or C 6 -C 32 aryl, C 5 -C 3 2 or C 6 -C 3 2 substituted aryl, C 6 -C 3 2 alkylaryl, C 6 -C 32 substituted alkylaryl, -(CHR 6 -CHR 6 -0-) w -L and a siloxyl residue;each R 6 is independently selected from H, Ci-Cis alkyl each L is independently selected from -C(0)-R7 or R7;w is an integer from 0 to 500, preferably w is an integer from 1 to 200;more preferably w is an integer from 1 to 50;each R7 is selected independently from the group consisting of H;Ci-C 32 alkyl;Ci-C 32 substituted alkyl, C 5 -C 32 or C 6 -C 32 aryl, Cs-C 32 or C 6 -C 32 substituted aryl, C 6 -C 32 alkylaryl;C 6 - C 32 substituted alkylaryl and a siloxyl residue;OT CH 2 OT — CH 2 — CH-CH 2 -R 5;CH— CH 2 -R 5 and wherein each v in said organosilicone is an integer from 1 to 10, preferably v is an integer from 1 to 5 and the sum of all v indices in each Q in the said organosilicone is an integer from 1 to 30, preferably from 1 to 20, more preferably from 1 to 10.
  2. 9
    A composition comprising an organosilicone polymer in the form of an emulsion having a Tau Value of 10 or less, preferably below 10, preferably below 8, preferably below 5, more preferably from below 5 to 0.5, said organosilicone polymer having a primary and secondary amine content of 0.6 mmol per gram or less, preferably from 0.5 mmol per gram to 0.001 mmol per gram, more preferably from 0.3 mmol/g to 0.01 mmol/g, more preferably from 0.2 mmol/g to 0.01 mmol/g.
  3. 10
    A method of treating and/or cleaning a situs, said method comprising a. ) optionally washing and/or rinsing said situs;b. ) contacting said situs with a composition according to any preceding claim;and c. ) optionally washing and/or rinsing said situs.
  4. 11
    A process of making an organomodified silicone comprising:a) combining an amino silicone, preferably said amino silicone comprises an aminoalkylmethylsiloxane copolymer, more preferably said aminoalkylmethylsiloxane comprises aminopropylmethylsiloxane - dimethylsiloxane copolymer with an epoxide and a catalyst comprising a protic solvent, to form a first mixture;b) heating said first mixture to a temperature of from 20°C to 200°C, preferably from 20°C to 150°C, more preferably from 20°C to 100°C, more preferably from 30°C to 80°C, most preferably from 40°C to 60°C, and maintaining said temperature for a time of from 1 hours to 48 hours, preferably from 2 hours to 10 hours, to form a organo modified silicone that may optionally comprise impurities;and c) optionally purifying said first mixture, preferably said purification comprises extraction with a fluid that said organo modified silicone is essentially insoluble in, preferably the solubility of said organo modified silicone in said solvent is less 10 grams of organo modified silicone per liter of solvent, preferably said solvent comprises a material selected from the group consisting of water, methanol and mixtures thereof.
  5. 12
    A process of making an organomodified silicone comprising:a) combining an amino silicone, preferably said amino silicone comprises an aminoalkylmethylsiloxane copolymer, in one aspect said aminoalkylmethylsiloxane comprises aminopropylmethylsiloxane - dimethylsiloxane copolymer with an epoxide comprising glycidol, to form a first mixture;b) heating said first mixture to a temperature of from 20°C to 100°C, preferably from 30°C to 80°C, more preferably from 40°C to 60°C, and maintaining said temperature for a time of from 1 hours to 48 hours, preferably from 2 hours to 10 hours, to form a organo modified silicone that may optionally comprise impurities;and c) optionally purifying said first mixture, preferably said purification comprises extraction with a fluid that said organo modified silicone is essentially insoluble in, preferably the solubility of said organo modified silicone in said solvent is less 10 grams of organo modified silicone per liter of solvent, preferably said solvent comprises a material selected from the group consisting of water, methanol and mixtures thereof.