Claims
- 1. A treated permeable inorganic membrane having a monomolecular layer of an organic material thereon and formed by treating the surface of a permeable inorganic membrane having oxide/hydroxide reactive sites with an organic acid to bond an acid group of the organic acid to the oxide/hydroxide sites on the membrane, the organic acid reactant selected from the class consisting of:
- (a) monocarboxylic acids having the formula RCOOH;
- (b) dicarboxylic acids having the formula R"(COOH).sub.2 ; and
- (c) boronic acid having the formula RB(OH).sub.2 ;
- where R comprises a 1-30 carbon-containing group and R" comprises a 2-30 carbon-containing group and wherein excess organic acid material not bonded to the underlying membrane surface is removed.
- 2. The treated permeable inorganic membrane of claim 1 wherein said monomolecular layer of organic acid reactant is chemically bonded to at least 90% of the reactive sites on said permeable inorganic membrane surface.
- 3. The treated permeable inorganic membrane of claim 1 wherein said monomolecular layer of organic acid reactant is chemically bonded to at least 99% of the reactive sites on said permeable inorganic membrane surface.
- 4. The permeable inorganic membrane of claim 1 wherein said coated membrane has an average pore size of from about 0.1 .ANG. to about 1000 microns in diameter.
- 5. The permeable inorganic membrane of claim 4 wherein said membrane comprises one or more oxides selected from the class consisting of aluminum oxide, iron oxide, titanium oxide, zirconium oxide, and zeolites.
- 6. The permeable inorganic membrane of claim 5 wherein said membrane comprises one or more oxides selected from the class consisting of aluminum oxide and zirconium oxide.
- 7. The permeable inorganic membrane of claim 6 wherein said membrane comprises aluminum oxide.
- 8. The permeable inorganic membrane of claim 6 wherein said membrane comprises zirconium oxide.
- 9. The permeable inorganic membrane of claim 4 wherein the thickness of said monomolecular layer of organic acid material chemically bonded to said membrane surface is in the range of 2 to 5,000 .ANG..
- 10. The permeable inorganic membrane of claim 9 wherein the thickness of said monomolecular layer of organic acid material chemically bonded to said membrane surface is in the range of 3 to 500 .ANG..
- 11. The permeable inorganic membrane of claim 4 wherein said R group of said organic acid material contains at least 5 carbon atoms.
- 12. The permeable inorganic membrane of claim 4 wherein said R group may comprise an organic radical selected from the class consisting of long and short chain aliphatic hydrocarbons, aromatic hydrocarbons, aldehydes, ketones, amines, amides, thioamides, imides, lactams, anilines, pyridines, piperidines, carbohydrates, esters, lactones, ethers, alkenes, alkynes, alcohols, nitriles, oximes, organosilicones, ureas, thioureas, perfluoro organic molecules, perchloro organic molecules, perbromo organic molecules and combinations of these groups.
- 13. The permeable inorganic membrane of claim 12 wherein said R group may have a functional group attached to a portion of said organic acid material spaced from the portion of said material bonded to said membrane surface and selected from the class consisting of a glucose group, a cyano group, a cyanate group, isocyanate group and thiocyanate group, a phenyl group, a diphenyl group, a tertiary butyl group, a sulfonic group, a benzyl sulfonic group, a halogen group, nitrate group, phosphate group, phosphinate group, phosphinite group, phosphonate group, quaternary ammonium salt group and combinations of these groups.
- 14. The permeable inorganic membrane of claim 12 wherein said R group may have a cation exchange functional group attached to a portion of said organic acid material spaced from the portion of said material bonded to said membrane surface and selected from the class consisting of --SO.sub.3 H, --N.sup.+ (CH.sub.3).sub.3 Cl, --COONa, --NH.sub.2 and --CN.
- 15. The permeable inorganic membrane of claim 4 wherein said monomolecular layer of organic acid material is substantially free of hydroxyl groups after chemically bonding to said membrane surface.
- 16. A process for chemically bonding a monomolecular layer of an organic acid material to a permeable inorganic membrane having a surface provided with oxide/hydroxide reactive sites to form a coated membrane surface, which process comprises:
- (a) providing a liquid containing an organic acid reactant selected from the class consisting of:
- (i) monocarboxylic acids having the formula RCOOH;
- (ii) dicarboxylic acids having the formula R(COOH).sub.2 ; and
- (iii) boronic acid having the formula RB(OH).sub.2 ;
- where R comprises a 1-30 carbon-containing group;
- (b) contacting a surface of said permeable inorganic membrane with said liquid containing said organic acid reactant; thereby to bond an acid group of the inorganic acid to the oxide/hydroxide sites on said membrane surface; and
- (c) removing excess acid not bonded to the underlying membrane surface.
- 17. The process of claim 16 wherein said step of providing a liquid containing an organic acid reactant therein further comprises maintaining a concentration of said organic acid reactant in said liquid of at least about 0.001 molar.
- 18. The process of claim 16 wherein said step of contacting said membrane surface with said liquid containing said organic acid reactant further comprises maintaining said contact for from about 0.01 second to about 20 hours.
- 19. The process of claim 18 wherein said step of contacting said membrane surface with said liquid containing said organic acid reactant further comprises maintaining said contact for from about 0.5 to about 4 hours.
- 20. The process of claim 16 wherein said step of contacting said membrane surface with said liquid containing said organic acid reactant further comprises maintaining the temperature of the reactants within a range of about 5.degree. to 150.degree. C. during said contacting step.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. Ser. No. 023,423, filed Mar. 9, 1987, now U.S. Pat. No. 4,788,176, which is a continuation-in-part of U.S. Ser. No. 946,870, filed Dec. 29, 1986 (now abandoned), and is related to U.S. Ser. No. 023,312, filed Mar. 9, 1987, now U.S. Pat. No. 4,871,711, and U.S. Ser. No. 023,429, filed Mar. 9, 1987, now U.S. Pat. No. 4,786,628.
US Referenced Citations (6)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
23423 |
Mar 1987 |
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Parent |
946870 |
Dec 1986 |
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