Claims
- 1. A method comprising:
dissolving a metal ion salt in a solvent system to form a metal ion salt solution, wherein said solvent system is common to said metal ion salt and a polymer; adding an epoxide to said metal ion salt solution to form an epoxide-containing metal ion salt solution; dissolving said polymer in said solvent system to form a polymer solution; adding a portion of the polymer solution to the polymer-containing metal ion salt solution to form a polymer-containing, epoxide-containing metal ion salt solution; and stirring said a polymer-containing, epoxide-containing metal ion salt solution until said solution gels.
- 2. The method recited in claim 1, further comprising:
adding a fuel metal powder to said polymer-containing, epoxide-containing metal ion salt solution while stirring, wherein said addition of the fuel metal powder occurs before said polymer-containing, epoxide-containing metal oxide salt solution gels.
- 3. The method recited in claim 1, wherein said metal oxide is Fe2O3.
- 4. The method recited in claim 1, wherein said polymer is a fluoroelastomer.
- 5. The method recited in claim 4, wherein said fluoroelastomer is Viton®DA, A-100.
- 6. The method recited in claim 1, wherein Viton®A, A-100 is soluble in said solvent system.
- 7. The method recited in claim 1, wherein said solvent system is a mixture of ethanol and acetone.
- 8. The method recited in claim 2, wherein said fuel metal powder is Al, Mg, B, Ti, Zr or mixtures thereof.
- 9. The method recited in claim 2, wherein said fuel metal powder is ultra fine grain aluminum.
- 10. A nanocomposite produced by the process comprising:
dissolving a metal ionsalt in a solvent system to form a metal ion salt solution, wherein said solvent system is common to said metal ion salt and a polymer; adding an epoxide to said metal ion salt solution to form an epoxide-containing metal ion salt solution; dissolving said polymer in said solvent system to form a polymer solution; adding a portion of the polymer solution to the polymer-containing metal ion salt solution to form a polymer-containing, epoxide-containing metal ion salt solution; and stirring said a polymer-containing, epoxide-containing metal ion salt solution until said solution gels.
- 11. The nanocomposite produced by the process recited in claim 10, further comprising:
adding a fuel metal powder to said polymer-containing, epoxide-containing metal ion salt solution while stirring, wherein said addition of the fuel metal powder occurs before said polymer-containing, epoxide-containing metal ion salt solution gels.
- 12. The nanocomposite recited in claim 10, wherein said metal oxide is Fe2O3.
- 13. The nanocomposite produced by the process recited in claim 10, wherein said polymer is a fluoroelastomer.
- 14. The nanocomposite produced by the process recited in claim 11, wherein said fluoroelastomer is Viton®A, A-100.
- 15. The nanocomposite produced by the process recited in claim 10, wherein Viton®A, A-100 is soluble in said solvent system.
- 16. The nanocomposite produced by the process recited in claim 10, wherein said solvent system is a mixture of ethanol and acetone.
- 17. The nanocomposite produced by the process recited in claim 11, wherein said fuel metal powder is Al, Mg, B, Ti, Zr or mixtures thereof.
- 18. The nanocomposite produced by the process recited in claim 11, wherein said fuel metal powder is ultra fine grain aluminum.
- 19. A nanocomposite comprising:
an inorganic sol-gel polymer phase comprising at least one metal-oxide and at least one epoxide; and an interpenetrating organic polymer phase entwined in said inorganic sol-gel phase.
- 20. The nanocomposite recited in claim 19, wherein said inorganic sol-gel polymer phase further comprises:
A fuel metal powder.
- 21. The nanocomposite recited in claim 19, wherein said metal oxide is Fe2O3.
- 22. The nanocomposite recited in claim 19, wherein said polymer is a fluoroelastomer.
- 23. The nanocomposite recited in claim 22, wherein said fluoroelastomer is Viton®A, A-100.
- 24. The nanocomposite recited in claim 20, wherein said fuel metal powder is Al, Mg, B, Ti, Zr or mixtures thereof.
- 25. The nanocomposite recited in claim 20, wherein said fuel metal powder is ultra fine grain aluminum.
Government Interests
[0001] The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.