EP1546159A2

Enzyme catalyzed method of forming organosilicon esters

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Projected expiry passed 15 August 2023, 3.1 years ago.

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54 claims: 6 independent, 48 dependent

  1. 1
    Claims of equivalent WO 2004016625 A2 CLAIMS 1 . A method of forming an organosilicon ester, comprising contacting a hydrolase enzyme with an organosilicon reactant and an organic reactant, wherein:said organosilicon reactant comprises a organosilicon having the formula or or R R Si -R R wherein: each R is independently selected from alkyl, haloalkyi, unsaturated alkyl, aryl, hydroxy, alkoxy, hydrogen, -(OSiR 2 ) x -OSiR 3 , or R';at least one of R=R';x is 0 or greater than 0;y is equal to or greater than 3;and R' is: wherein: A is a substituted or unsubstituted hydrocarbon substituent, wherein said hydrocarbon may be substituted such that said hydrocarbon comprises a halogen-, ether-, alkoxy-, phenyl-, or unsaturated-functional hydrocarbon and combinations thereof;R" is independently carboxylic acid, ester, amide, or alcohol;and m is 0 or greater than 0;said organic reactant comprises an organic molecule having at least one carboxylic acid functional group, ester functional group, amide functional group, or alcohol functional group, and combinations thereof;said at least one functional group of said organic reactant comprises carboxylic acid, ester, or amide when R" is alcohol;said at least one functional group of said organic reactant comprises alcohol when R" is carboxylic acid, ester, or amide;and said enzyme catalyzes the formation of an ester bond between carboxylic acid, ester, or amide functional groups of said organosilicon reactant or said organic reactant and alcohol functional groups of said organosilicon reactant or said organic reactant to form said organosilicon ester.
  2. 21
    A method of forming an organosilicon ester, comprising contacting a hydrolase enzyme with an organosilicon reactant and an organic reactant, wherein:said organosilicon reactant comprises a organosilicon having the formula wherein: each R is independently selected from alkyl, haloalkyi, unsaturated alkyl, aryl, hydroxy, alkoxy, hydrogen, -(OSiR 2 ) x -OSiR 3 , or R';at least one of R=R';x is 0 or greater than 0;y is equal to or greater than 3;and R' is: wherein: A is a substituted or unsubstituted hydrocarbon substituent, wherein said hydrocarbon may be substituted such that said hydrocarbon comprises a halogen-, ether-, alkoxy-, phenyl-, or unsaturated-functional hydrocarbon and combinations thereof;R" is independently carboxylic acid, ester, amide, or alcohol;and m is 0 or greater than 0;said organic reactant comprises an organic molecule having at least one carboxylic acid functional group, ester functional group, amide functional group, or alcohol functional group, and combinations thereof;said at least one functional group of said organic reactant comprises carboxylic acid, ester, or amide when R" is alcohol;said at least one functional group of said organic reactant comprises alcohol when R" is carboxylic acid, ester, or amide;and said enzyme catalyzes the formation of an ester bond between carboxylic acid, ester, or amide functional groups of said organosilicon reactant or said organic reactant and alcohol functional groups of said organosilicon reactant or said organic reactant to form said organosilicon ester.
  3. 22
    A method of forming an organosilicon amide, comprising contacting a hydrolase enzyme with an organosilicon reactant and an organic reactant, wherein:said organosilicon reactant comprises a organosilicon having the formula or or R R Si R wherein: each R is independently selected from alkyl, haloalkyi, unsaturated alkyl, aryl, hydroxy, alkoxy, hydrogen, -(OSiR 2 ) x -OSiR 3 , or R';at least one of R=R';x is 0 or greater than 0;y is equal to or greater than 3;and R' is: wherein: A is a substituted or unsubstituted hydrocarbon substituent, wherein said hydrocarbon may be substituted such that said hydrocarbon comprises a halogen-, ether-, alkoxy-, phenyl-, or unsaturated-functional hydrocarbon and combinations thereof;R" is independently carboxylic acid, ester, amine, or amide;and m is 0 or greater than 0;said organic reactant comprises an organic molecule having at least one carboxylic acid functional group, ester functional group, or amine functional group, or amide functional group, and combinations thereof;said at least one functional group of said organic reactant comprises carboxylic acid, ester, or amide when R" is amine;said at least one functional group of said organic reactant comprises amine when R" is carboxylic acid, ester, or amide;and said enzyme catalyzes the formation of an amide bond between carboxylic acid, ester, or amide functional groups of said organosilicon reactant or said organic reactant and amine functional groups of said organosilicon reactant or said organic reactant to form said organosilicon amide.
  4. 42
    A method of forming an organosilicon amide, comprising contacting a hydrolase enzyme with an organosilicon reactant and an organic reactant, wherein:said organosilicon reactant comprises a organosilicon having the formula or wherein: each R is independently selected from alkyl, haloalkyi, unsaturated alkyl, aryl, hydroxy, alkoxy, hydrogen, -(OSiR 2 ) x -OSiR 3 , or R';at least one of R=R';x is 0 or greater than 0;y is equal to or greater than 3;and R' is: wherein: A is a substituted or unsubstituted hydrocarbon substituent, wherein said hydrocarbon may be substituted such that said hydrocarbon comprises a halogen-, ether-, alkoxy-, phenyl-, or unsaturated-functional hydrocarbon and combinations thereof;R" is independently carboxylic acid, ester, amine, or amide;and m is 0 or greater than 0;said organic reactant comprises an organic molecule having at least one carboxylic acid functional group, ester functional group, or amine functional group, or amide functional group, and combinations thereof;said at least one functional group of said organic reactant comprises carboxylic acid, ester, or amide when R" is amine;said at least one functional group of said organic reactant comprises amine when R" is carboxylic acid, ester, or amide;and said enzyme catalyzes the formation of an amide bond between carboxylic acid, ester, or amide functional groups of said organosilicon reactant or said organic reactant and amine functional groups of said organosilicon reactant or said organic reactant to form said organosilicon amide.
  5. 43
    An organosilicon ester comprising a structurally defined compound having the formula:wherein: each R 1 is independently selected from alkyl, haloalkyi, unsaturated alkyl, aryl, hydroxy, alkoxy, hydrogen, -(OSiR 1 2 ) x -OSiR 1 3 , or R" 1 ;at least one of R 1 =R'";y is equal to or greater than 3;and R'" is: wherein: A is a substituted or unsubstituted hydrocarbon substituent, wherein said hydrocarbon may be substituted such that said hydrocarbon comprises a halogen-, ether-, alkoxy-, phenyl-, or unsaturated-functional hydrocarbon and combinations thereof;R 2 is an organic compound;and m is 0 or greater than 0.
  6. 49
    An organosilicon amide comprising a structurally defined compound having the formula:or wherein: each R 1 is independently selected from alkyl, haloalkyi, unsaturated alkyl, aryl, hydroxy, alkoxy, hydrogen, -(OSiR 1 2 ) x -OSiR 1 3 , or R'";at least one of R 1 =R'";x is 0 or greater than 0;y is equal to or greater than 3;and R'" is: wherein: A is a substituted or unsubstituted hydrocarbon substituent, wherein said hydrocarbon may be substituted such that said hydrocarbon comprises a halogen-, ether-, alkoxy-, phenyl-, or unsaturated-functional hydrocarbon and combinations thereof;R 2 is an organic compound;and m is 0 or greater than 0.