Claims
- 1. A method of preparing polyphenols and polyaromatic amines, the method comprising the following steps:
(a) preparing a synthesis reaction medium allowing for the control of molecular weight and polydispersity of the polymerization product, the synthesis reaction medium being selected from the group consisting of reversed micelles, bulk organic solvent mixtures, and biphasic reaction media; (b) adding to the synthesis reaction medium an aqueous preparation of an enzyme; (c) adding to the synthesis reaction medium and enzyme preparation a monomer selected from the group consisting of phenols, aromatic amines, and their derivatives to form a reaction mixture; (d) initiating a polymerization reaction by adding dropwise 30% hydrogen peroxide (w/w) (up to about 30% stoichiometric excess) while stirring the reaction mixture; (e) continuing stirring for several hours; (f) centrifuging the precipitate formed; (g) repeated washing of the precipitate with pure isooctane to remove substances selected from the group consisting of the surfactant and any unreacted monomer; and (h) drying the final precipitate overnight under a reduced pressure at 50° C.
- 2. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the reversed micelles are formed from dioctyl sodium sulfosuccinate and isooctane.
- 3. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the reversed micelles are formed from chloroform and/or isooctane.
- 4. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the bulk organic solvent mixtures are formed from dimethylformamide and water.
- 5. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the bulk organic solvent mixtures are formed from dioxane and water.
- 6. The method of producing poly phenols and polyaromatic amines, as claimed in claim 1, wherein the bulk organic solvent mixtures are formed from ethanol and water.
- 7. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the bulk organic solvent mixtures are formed from isooctane and methylchloride.
- 8. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the biphasic systems are formed from organic solvents and water.
- 9. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the enzyme is selected from the group consisting of peroxidases, tyrosinases, laccases, phenoloxidases, aromatic aminoxidases.
- 10. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the monomer is p-ethylphenol.
- 11. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the monomer is m-cresol.
- 12. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the molecular weight of the polymer molecules is between 600 and 3,600.
- 13. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the molecular weight of the polymer molecules is between 1,400 and 25,000.
- 14. The method of producing polyphenols and polyaromatic amines, as claimed in claim 1, wherein the polydispersity of the polymer molecules ranges from 1.02 to greater than 2.
- 15. A method of producing derivatives of polyphenols and polyaromatic amines, the method comprising the following steps:
(a) preparing a synthesis reaction medium allowing for the control of molecular weight and polydispersity of the polymerization product, the synthesis reaction medium being selected from the group consisting of reversed micelles, bulck organic solvent mixtures, and biphasic reaction media; (b) adding to the synthesis reaction medium an aqueous preparation of an enzyme; (c) adding to the synthesis reaction medium and enzyme preparation a monomer selected from the group consisting of phenols, aromatic amines, and their derivatives, and to form a reaction mixture; (d) initiating a polymerization reaction by adding dropwise 30% hydrogen peroxide (w/w) (up to about 30% stoichiometric excess) while stirring the reaction mixture; (e) continuing stirring for several hours; (f) centrifuging the precipitate formed; (g) repeated washing of the precipitate with pure isooctane to remove the surfactant and/or any unreacted monomer; and (h) drying the final precipitate overnight under a reduced pressure at 50° C.
- 16. The method of producing derivatives of polyphenols and polyaromatic amines, as claimed in claim 15, wherein the derivative comprises palmitoyl chloride.
- 17. The method of producing derivatives of polyphenols and polyaromatic amines, as claimed in claim 15, wherein the derivative comprises cinnamoyl chloride.
- 18. The method of producing derivatives of polyphenols and polyaromatic amines, as claimed in claim 15, wherein the derivative comprises biotin compounds.
- 19. A polymerization product produced by:
(a) preparing a synthesis reaction medium allowing for the control of molecular weight and polydispersity of the polymerization product, the synthesis reaction medium being selected from the group consisting of reversed micelles, bulk organic solvent mixtures, and biphasic systems; (b) adding to the synthesis reaction medium an aqueous preparation of an enzyme; (c) adding to the synthesis reaction medium and enzyme preparation a monomer selected from the group consisting of phenols, aromatic amines, and their derivatives to form a reaction mixture; (d) initiating a polymerization reaction by adding dropwise 30% hydrogen peroxide (w/w) (up to about 30% stoichiometric excess) while stirring the reaction mixture; (e) continuing stirring for several hours; (f) centrifuging the precipitate formed; (g) repeated washing of the precipitate with pure isooctane to remove the surfactant and any unreacted monomer; and (h) drying the final precipitate overnight under a reduced pressure at 50° C.
- 20. The polymerization product, as claimed in claim 19, wherein the reversed micelles are formed from dioctyl sodium sulfosuccinate and isooctane.
- 21. The polymerization product, as claimed in claim 19, wherein the reversed micelles are formed from AOT, chloroform, and isooctane.
- 22. The polymerization product, as claimed in claim 19, wherein the bulk organic solvent mixtures are formed from dimethylformamide and water.
- 23. The polymerization product, as claimed in claim 19, wherein the bulk organic solvent mixtures are formed from dioxane and water.
- 24. The polymerization product, as claimed in claim 19, wherein the bulk organic solvent mixtures are formed from ethanol and water.
- 25. The polymerization product, as claimed in claim 19, wherein the bulk organic solvent mixtures are formed from isooctane and methylchloride.
- 26. The polymerization product, as claimed in claim 19, wherein the biphasic systems are formed from organic solvents and water.
- 27. The polymerization product, as claimed in claim 19, wherein the enzyme is selected from the group consisting of peroxidases, tyrosinases, laccases, phenoloxidases, aromatic aminoxidases.
- 28. The polymerization product, as claimed in claim 19, wherein the monomer is p-ethylphenol.
- 29. The polymerization product, as claimed in claim 19, wherein the monomer is m-cresol.
- 30. The polymerization product, as claimed in claim 19, wherein the molecular weight of the polymer molecules is between 600 and 3,600.
- 31. The polymerization product, as claimed in claim 19, wherein the molecular weight of the polymer molecules is between 1,400 and 25,000.
- 32. The polymerization product, as claimed in claim 19, wherein the polydispersity of the polymer molecules ranges from 1.02 to greater than 2.
- 33. A film comprising a polymerization product produced by:
(a) preparing a synthesis reaction medium allowing for the control of molecular weight and polydispersity of the polymerization product, the synthesis reaction medium being selected from the group consisting of reversed micelles, bulk organic solvent mixtures, and biphasic systems; (b) adding to the synthesis reaction medium an aqueous preparation of an enzyme; (c) adding to the synthesis reaction medium and enzyme preparation a monomer selected from the group consisting of phenols, aromatic amines, and their derivatives to form a reaction mixture; (d) initiating a polymerization reaction by adding dropwise 30% hydrogen peroxide (w/w) (up to about 30% stoichiometric excess) while stirring the reaction mixture; (e) continuing stirring for several hours; (f) centrifuging the precipitate formed; (g) repeated washing of the precipitate with pure isooctane to remove the surfactant and any unreacted monomer; and (h) drying the final precipitate overnight under a reduced pressure at 50° C.
- 34. A photoresist material comprising a polymerization product produced by:
(a) preparing a synthesis reaction medium allowing for the control of molecular weight and polydispersity of the polymerization product, the synthesis reaction medium being selected from the group consisting of reversed micelles, bulk organic solvent mixtures, and biphasic systems; (b) adding to the synthesis reaction medium an aqueous preparation of an enzyme; (c) adding to the synthesis reaction medium and enzyme preparation a monomer selected from the group consisting of phenols, aromatic amines, and their derivatives to form a reaction mixture; (d) initiating a polymerization reaction by adding dropwise 30% hydrogen peroxide (w/w) (up to about 30% stoichiometric excess) while stirring the reaction mixture; (e) continuing stirring for several hours; (f) centrifuging the precipitate formed; (g) repeated washing of the precipitate with pure isooctane to remove the surfactant and any unreacted monomer; and (h) drying the final precipitate overnight under a reduced pressure at 50° C.
- 35. UV absorbing materials comprising a polymerization product produced by:
(a) preparing a synthesis reaction medium allowing for the control of molecular weight and polydispersity of the polymerization product, the synthesis reaction medium being selected from the group consisting of reversed micelles and bulk organic solvent mixtures; (b) adding to the synthesis reaction medium an aqueous preparation of an enzyme; (c) adding to the synthesis reaction medium and enzyme preparation a monomer selected from the group consisting of phenols, aromatic amines, and their derivatives to form a reaction mixture; (d) initiating a polymerization reaction by adding dropwise 30% hydrogen peroxide (w/w) (up to about 30% stoichiometric excess) while stirring the reaction mixture; (e) continuing stirring for several hours; (f) centrifuging the precipitate formed; (g) repeated washing of the precipitate with pure isooctane to remove the surfactant and any unreacted monomer; and (h) drying the final precipitate overnight under a reduced pressure at 50° C.
STATEMENT OF GOVERNMENT INTEREST
[0001] The invention described herein may be manufactured and used by the Government for governmental purposes without the payment of any royalty thereon.