Claims
- 1. A fluoropolymer nanocomposite, comprising:
- (a) a fluoropolymer phase comprising at least one fluoropolymer; and
- (b) at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase and said inorganic oxide phase either exhibiting no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm; and the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent.
- 2. The fluoropolymer nanocomposite of claim 1 wherein the inorganic oxide phase is continuous.
- 3. The fluoropolymer nanocomposite of claim 2 wherein the inorganic oxide phase and the fluoropolymer phase form a semi-interpenetrating network.
- 4. The fluoropolymer nanocomposite of claim 1 wherein the inorganic oxide phase is discontinuous.
- 5. The fluoropolymer nanocomposite of claim 4 wherein the particle size of substantially all particles of the inorganic oxide phase is from about 0.1 nm to about 50 nm.
- 6. The fluoropolymer nanocomposite of claim 1 wherein the at least one inorganic oxide precursor comprises a mixture of inorganic oxide precursors, each precursor being individually soluble or insoluble in the fluorinated solvent, provided said mixture is soluble in the fluorinated solvent.
- 7. The fluoropolymer nanocomposite of claim 1 wherein the inorganic oxide precursor is an alkoxide or fluoroalkoxide of Al, B, Ge, Si, Sn, Ti and Zr.
- 8. The fluoropolymer nanocomposite of claim 7 wherein the inorganic oxide precursor is a compound having the formula (R.sub.f C.sub.a H.sub.2a O).sub.n MR.sup.4-n, wherein:
- M is Ge, Si or Sn;
- a is 1 to 10;
- n is 2, 3 or 4;
- R.sub.f has up to about of 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ; and
- R is selected from the group consisting of:
- H, C.sub.1 to about C.sub.8 alkyl, C.sub.a H.sub.2a R.sub.f, C.sub.1 to about C.sub.8 alkoxy, C.sub.1 to about C.sub.8 alkenyl, C.sub.1 to about C.sub.8 alkynyl, C.sub.6 H.sub.5, aryl, and aralkyl.
- 9. The fluoropolymer nanocomposite of claim 7 wherein the inorganic oxide precursor is a compound having the formula (R.sub.f C.sub.a H.sub.2a O).sub.n M.sup.1 R.sub.4-n (HOR).sub.q.sup.1, wherein
- M.sup.1 is Ti or Zr;
- n is 2, 3, or 4;
- R.sub.f has up to about of 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- R is selected from the group consisting of:
- H, C.sub.1 to about C.sub.8 alkyl, C.sub.a H.sub.2a R.sub.f, C.sub.1 to about C.sub.8 alkoxy, C.sub.1 to about C.sub.8 alkenyl, C.sub.1 to about C.sub.8 alkynyl, C.sub.6 H.sub.5, aryl, and aralkyl;
- a is an integer from 1 to about 10; and
- q.sup.1 is 0 or 1.
- 10. The fluoropolymer nanocomposite of claim 7 wherein the inorganic oxide precursor is a compound having the formula (R.sub.f C.sub.a H.sub.2a O).sub.n' M'R.sub.3-n', wherein:
- M' is Al or B;
- n' is 1, 2 or 3;
- R.sub.f has up to about of 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- R is selected from the group consisting of:
- H, C.sub.1 to about C.sub.8 alkyl, C.sub.a H.sub.2a R.sub.f, C.sub.1 to about C.sub.8 alkoxy, C.sub.1 to about C.sub.8 alkenyl, C.sub.1 to about C.sub.8 alkynyl, C.sub.6 H.sub.5, aryl, and aralkyl;
- a is an integer from 1 to about 10.
- 11. The fluoropolymer nanocomposite of claim 7 wherein the inorganic oxide precursor is a chelating compound having the formula (R.sub.f C.sub.a H.sub.2a O).sub.n" M".sup.cn D.sup.d p, wherein:
- D is a chelating ligand, optionally fluorinated;
- M" is Si, Al, Ti or Zr;
- cn is a silicon, aluminum, titanium or zirconium coordination number, being in each case an integer having a value of 4-6;
- d is a number, either 2 or 3, corresponding to the chelating ability of the ligand D, d being 2 for a bidentate ligand and 3 for a tridentate ligand;
- p is either 1, 2 or 3, except that for d=3, p always is 1;
- n" is cn-(d.times.p);
- R.sub.f has up to about of 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2;
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ; and
- a is an integer from 1 to about 10.
- 12. The fluoropolymer nanocomposite of claim 1 wherein the inorganic oxide precursor is a fluorine-bearing silane.
- 13. The fluoropolymer nanocomposite of claim 12 wherein the inorganic oxide precursor is a compound selected from the group consisting of:
- a compound having the formula:
- (R.sub.f C.sub.a H.sub.2a O).sub.t SiR.sub.4-t (I)
- wherein:
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- R is selected from the group consisting of:
- hydrogen, C.sub.1 to about C.sub.8 alkyl, C.sub.a H.sub.2a R.sub.f, C.sub.1 to about C.sub.8 alkoxy, C.sub.1 to about C.sub.10 carboxy, C.sub.1 to about C.sub.10 fluorocarboxy, C.sub.2 to about C.sub.8 alkenyl, C.sub.2 to about C.sub.8 alkynyl, C.sub.6 H.sub.5, aryl, and aralkyl;
- t is 1, 2, 3 or 4; and
- a is an integer from 1 to about 10;
- a compound having the formula:
- X(Si(OC.sub.a H.sub.2a R.sub.f).sub.3).sub.n (II)
- wherein:
- X is at least one organic link selected from the group consisting of:
- (a) R.sup.1.sub.m SiY.sub.4-m ;
- (b) ring structures ##STR14## (c) R.sup.1.sub.m Si(OSi(CH.sub.3).sub.2 Y).sub.4-m ; (d) CH.sub.3 SiY.sub.2 OSiY.sub.2 CH.sub.3 ;
- (e) Y.sub.3 SiOSiY.sub.3 ;
- (f) Y.sub.2 (CH.sub.3)Si(CH.sub.2).sub.b Si(CH.sub.3)Y.sub.2 ;
- (g) Y.sub.3 Si(CH.sub.2).sub.b SiY.sub.3 ;
- (h) Y.sub.3 SiC.sub.6 H.sub.4 SiY.sub.3 ;
- (i) substituted benzene, including all isomers, selected from the group consisting of:
- (i) C.sub.6 H.sub.3 (SiZ.sub.3-c Y.sub.c).sub.3 ;
- (ii) C.sub.6 H.sub.2 (SiZ.sub.3-c Y.sub.c).sub.4 ;
- (iii) C.sub.6 H(SiZ.sub.3-c Y.sub.c).sub.5 ; and
- (iv) C.sub.6 (SiZ.sub.3-c Y.sub.c).sub.6 ; and
- (j) substituted cyclohexane, including all stereoisomers, selected from the group consisting of:
- (i) 1,2-C.sub.6 H.sub.10 (Y).sub.2 ; 1,3-C.sub.6 H.sub.10 (Y).sub.2 ; 1,4-C.sub.6 H.sub.10 (Y).sub.2 ;
- (ii) 1,2,4-C.sub.6 H.sub.9 (Y).sub.3 ; 1,2,3-C.sub.6 H.sub.9 (Y).sub.3 ; 1,3,5-C.sub.6 H.sub.9 (Y).sub.3 ;
- (iii) 1,2,3,4-C.sub.6 H.sub.8 (Y).sub.4 ; 1,2,4,5-C.sub.6 H.sub.8 (Y).sub.4 ; 1,2,3,5-C.sub.6 H.sub.9 (Y).sub.4 ;
- (iv) 1,2,3,4,5-C.sub.6 H.sub.7 (Y).sub.5 ; and
- (v) C.sub.6 H.sub.6 (Y).sub.6 ;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- Z is C.sub.1 to about C.sub.4 alkyl, 3,3,3-trifluoropropyl, aralkyl or aryl;
- Y is --(CR.sup.2 R.sup.3).sub.k CR.sup.4 R.sup.5 CR.sup.6 R.sup.7 (CR.sup.8 R.sup.9).sub.h --
- R.sup.1 is C.sub.1 to about C.sub.8 alkyl or aryl;
- R.sup.2 to R.sup.9 are each independently hydrogen, C.sub.1 to about C.sub.8 alkyl or aryl, provided that at least one of R.sup.4 to R.sup.7 is hydrogen;
- m is 0, 1 or 2;
- k and h are each independently an integer from 0 to 10, provided that at least one of k or h is zero;
- a is an integer from 1 to about 10;
- b is an integer from 1 to about 10;
- c is 1, 2 or 3; and
- n is an integer greater than or equal to 2;
- IIA: a compound having the formula:
- X(R.sup.10 Si(OC.sub.a H.sub.2a R.sub.f).sub.2).sub.n (IIA)
- wherein:
- X is at least one organic link selected from the group consisting of:
- (a) R.sup.1.sub.m SiY.sub.4-m ;
- (b) ring structures ##STR15## (c) R.sup.1.sub.m Si(OSi(CH.sub.3).sub.2 Y).sub.4-m ; (d) CH.sub.3 SiY.sub.2 OSiY.sub.2 CH.sub.3 ;
- (e) Y.sub.3 SiOSiY.sub.3 ;
- (f) Y.sub.2 (CH.sub.3)Si(CH.sub.2).sub.b Si(CH.sub.3)Y.sub.2 ;
- (g) Y.sub.3 Si(CH.sub.2).sub.b SiY.sub.3 ;
- (h) Y.sub.3 SiC.sub.6 H.sub.4 SiY.sub.3 ;
- (i) substituted benzene, including all isomers, selected from the group consisting of:
- (i) C.sub.6 H.sub.3 (SiZ.sub.3-c Y.sub.c).sub.3 ;
- (ii) C.sub.6 H.sub.2 (SiZ.sub.3-c Y.sub.c).sub.4 ;
- (iii) C.sub.6 H(SiZ.sub.3-c Y.sub.c).sub.5 ; and
- (iv) C.sub.6 (SiZ.sub.3-c Y.sub.c).sub.6 ; and
- (j) substituted cyclohexane, including all stereoisomers, selected from the group consisting of:
- (i) 1,2-C.sub.6 H.sub.10 (Y).sub.2 ; 1,3-C.sub.6 H.sub.10 (Y).sub.2 ; 1,4-C.sub.6 H.sub.10 (Y).sub.2 ;
- (ii) 1,2,4-C.sub.6 H.sub.9 (Y).sub.3 ; 1,2,3-C.sub.6 H.sub.9 (Y).sub.3 ; 1,3,5-C.sub.6 H.sub.9 (Y).sub.3 ;
- (iii) 1,2,3,4-C.sub.6 H.sub.8 (Y).sub.4 ; 1,2,4,5-C.sub.6 H.sub.8 (Y).sub.4 ; 1,2,3,5-C.sub.6 H.sub.9 (Y).sub.4 ;
- (iv) 1,2,3,4,5-C.sub.6 H.sub.7 (Y).sub.5 ; and
- (v) C.sub.6 H.sub.6 (Y).sub.6 ;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- Z is C.sub.1 to about C.sub.4 alkyl, 3,3,3-trifluoropropyl, aralkyl or aryl;
- Y is --(CR.sup.2 R.sup.3).sub.k CR.sup.4 R.sup.5 CR.sup.6 R.sup.7 (CR.sup.8 R.sup.9).sub.h --
- R.sup.1 is C.sub.1 to about C.sub.8 alkyl or aryl;
- R.sup.2 to R.sup.9 are each independently hydrogen, C.sub.1 to about C.sub.8 alkyl, or aryl, provided that at least one of R.sup.4 to R.sup.7 is hydrogen;
- R.sup.10 is C.sub.1 to about C.sub.8 alkyl or C.sub.a H.sub.2a R.sub.f ;
- m is 0, 1 or 2;
- k and h are each independently an integer from 0 to 10, provided that at least one of k or h is zero;
- a is an integer from 1 to about 10;
- b is an integer from 1 to about 10;
- c is 1, 2 or 3; and
- n is an integer greater than or equal to 2;
- a compound having the formula:
- (CF.sub.2).sub.v �YSi(OR.sup.13).sub.3 !.sub.2 (III)
- wherein:
- R.sup.13 is C.sub.1 to about C.sub.8 alkyl, C.sub.1 to about C.sub.10 carboxy, C.sub.1 to about C.sub.10 fluorocarboxy, halogen or C.sub.a H.sub.2a R.sub.f ;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- a is an integer from 1 to about 10;
- v is an even integer from 2 to about 14;
- Y is --(CR.sup.2 R.sup.3).sub.k CR.sup.4 R.sup.5 CR.sup.6 R.sup.7 (CR.sup.8 R.sup.9).sub.h --
- R.sup.2 to R.sup.9 are each independently hydrogen, C.sub.1 to about C.sub.8 alkyl or aryl, provided that at least one of R.sup.4 to R.sup.7 is hydrogen; and
- k and h are each independently an integer from 0 to 10, provided that at least one of k or h is zero;
- IIIA: a compound having the formula:
- (CF.sub.2).sub.v (YSiR.sup.10 (OR.sup.10).sub.2).sub.2 (IIIA)
- wherein:
- R.sup.10 is C.sub.1 to about C.sub.8 alkyl or C.sub.a H.sub.2a R.sub.f ;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- a is an integer from 1 to about 10;
- v is an even integer from 2 to about 14; and
- Y is --(CR.sup.2 R.sup.3).sub.k CR.sup.4 R.sup.5 CR.sup.6 R.sup.7 (CR.sup.8 R.sup.9).sub.h --
- R.sup.13 is C.sub.1 to about C.sub.8 alkyl, C.sub.1 to about C.sub.10 carboxy, C.sub.1 to about C.sub.10 fluorocarboxy, halogen or C.sub.a H.sub.2a R.sub.f ;
- R.sup.1 is C.sub.1 to about C.sub.8 alkyl or aryl;
- R.sup.2 to R.sup.9 are each independently hydrogen, C.sub.1 to about C.sub.8 alkyl, or aryl, provided that at least one of R.sup.4 to R.sup.7 is hydrogen; and k and h are each independently an integer from 0 to 10, provided that at least one of k or h is zero;
- a fluoroalkylphenylsilane having the formula: ##STR16## wherein: R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- Ar is a divalent aromatic radical;
- W is selected from the group consisting of
- (e) C.sub.1 to about C.sub.8 alkyl;
- (f) R.sub.f --Ar, wherein each of R.sub.f and Ar is as defined above;
- (g) halogen selected from the group consisting of chlorine, bromine and iodine;
- (h) C.sub.1 to about C.sub.8 alkoxy;
- (i) C.sub.1 to about C.sub.8 fluoroalkoxy; and
- (j) C.sub.1 to about C.sub.10 carboxy or fluorocarboxy; and
- each of Q and T independently is selected from the group consisting of
- (k) halogen selected from the group consisting of chlorine, bromine and iodine;
- (l) C.sub.1 to about C.sub.8 alkoxy;
- (m) C.sub.1 to about C.sub.8 fluoroalkoxy; and
- (n) C.sub.1 to about C.sub.10 carboxy or fluorcarboxy;
- a dioxolane having the formula: ##STR17## wherein: R.sup.13 is C.sub.1 to about C.sub.8 alkyl, C.sub.1 to about C.sub.8 carboxy, C.sub.1 to about C.sub.8 fluorocarboxy, halogen or C.sub.a H.sub.2a R.sub.f ;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O) q--CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- R.sup.11 and R.sup.12 are each independently selected from C.sub.1 to C.sub.3 fluoroalkyl or fluorine;
- a is an integer from 1 to about 10; and
- Y is --(CR.sup.2 R.sup.3).sub.k CR.sup.4 R.sup.5 CR.sup.6 R.sup.7 (CR.sup.8 R.sup.9).sub.h --
- R.sup.2 to R.sup.9 are each independently hydrogen, C.sub.1 to about C.sub.8 alkyl, or aryl, provided that at least one of R.sup.4 to R.sup.7 is hydrogen; and
- k and h are each independently an integer from 0 to 10, provided that at least one of k or h is zero;
- VA: a dioxolane having the formula: ##STR18## wherein: R.sup.10 is C.sub.1 to about C.sub.8 alkyl or C.sub.a H.sub.2a R.sub.f ;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more H;
- R.sup.11 and R.sup.12 are each independently selected from C.sub.1 to C.sub.3 fluoroalkyl or fluorine;
- a is an integer from 1 to about 10; and
- Y is --(CR.sup.2 R.sup.3).sub.k CR.sup.4 R.sup.5 CR.sup.6 R.sup.7 (CR.sup.8 R.sup.9).sub.h --
- R.sup.13 is C.sub.1 to about C.sub.8 alkyl, C.sub.1 to about C.sub.10 carboxy, C.sub.1 to about C.sub.10 fluorocarboxy, halogen or C.sub.a H.sub.2a R.sub.f ;
- R.sup.2 to R.sup.9 are each independently hydrogen, C.sub.1 to about C.sub.8 alkyl, or aryl, provided that at least one of R.sup.4 to R.sup.7 is hydrogen; and
- k and h are each independently an integer from 0 to 10, provided that at least one of k or h is zero; and
- a compound having the formula: ##STR19## wherein: y is an integer from 2 to about 10;
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- Ar is a divalent aromatic radical;
- W is selected from the group consisting of
- (e) C.sub.1 to about C.sub.8 alkyl;
- (f) R.sub.f --Ar, wherein each of R.sub.f and Ar is as defined above;
- (g) halogen selected from the group consisting of chlorine, bromine and iodine;
- (h) C.sub.1 to about C.sub.8 alkoxy;
- (i) C.sub.1 to about C.sub.8 fluoroalkoxy; and
- (j) C.sub.1 to about C.sub.8 carboxy or fluorocarboxy; and
- each of Q and T independently is selected from the group consisting of
- (k) halogen selected from the group consisting of chlorine, bromine and iodine;
- (l) C.sub.1 to about C.sub.8 alkoxy;
- (m) C.sub.1 to about C.sub.8 fluoroalkoxy; and
- (n) C.sub.1 to about C.sub.10 carboxy or fluorocarboxy.
- 14. The fluoropolymer nanocomposite of claim 13 wherein the inorganic oxide precursor is selected from the group consisting of: Si(OCH.sub.2 CF.sub.3).sub.4 ; Si(OCH.sub.2 C.sub.3 F.sub.7).sub.4 ; HSi(OCH.sub.2 C.sub.3 F.sub.7).sub.3 ; F(CF.sub.2).sub.6 CH.sub.2 CH.sub.2 Si(OCH.sub.2 CH.sub.3).sub.3 ; F(CF.sub.2).sub.6 CH.sub.2 CH.sub.2 Si(OCH.sub.2 CF.sub.3).sub.3 ; F(CF.sub.2).sub.6 CH.sub.2 CH.sub.2 Si(OCH.sub.3).sub.3 ; (CH.sub.3 O).sub.3 Si(OCH.sub.2 CH.sub.2 C.sub.6 F.sub.13); (CH.sub.3 O).sub.2 Si(OCH.sub.2 CH.sub.2 C.sub.6 F.sub.13).sub.2 ; Si(OCH.sub.2 CH.sub.2 C.sub.6 F.sub.13).sub.4 ; HSi(OCH.sub.2 CF.sub.3).sub.3 ; (CH.sub.3 O).sub.3 Si(OCH.sub.2 CF.sub.3 CF.sub.3); (CH.sub.3 O).sub.3 Si(OCH.sub.2 C.sub.3 F.sub.7); (CH.sub.3 O).sub.2 Si(OCH.sub.2 CF.sub.3).sub.2 ; (CH.sub.3 O) Si(OCH.sub.2 CF.sub.3).sub.3 ; (CH.sub.3 O)Si(OCH.sub.2 C.sub.3 F.sub.7).sub.3 ; (CH.sub.3 O).sub.2 Si(OCH.sub.2 C.sub.3 F.sub.7).sub.2 ; CH.sub.2 .dbd.CHSi(OCH.sub.2 CF.sub.3).sub.3 ; CH.sub.2 .dbd.CHSi(OCH.sub.2 C.sub.3 F.sub.7).sub.3 ; Si(OSi(CH.sub.3).sub.2 CH.sub.2 CH.sub.2 Si(OCH.sub.2 CF.sub.3).sub.3).sub.4 ; Si(OSi(CH.sub.3).sub.2 CH.sub.2 CH.sub.2 Si(OCH.sub.2 C.sub.3 F.sub.7).sub.3).sub.4 ; Si(CH.sub.2 CH.sub.2 Si(OCH.sub.2 CF.sub.3).sub.4 ; Si(CH.sub.2 CH.sub.2 Si(OCH.sub.2 C.sub.3 F.sub.7).sub.3).sub.4 ; (CH.sub.3 ((CCF.sub.3 CH.sub.2 O).sub.3 SiCH.sub.2 CH.sub.2 SiO).sub.4 ; (CH.sub.3 ((C.sub.3 F.sub.7 CH.sub.2 O).sub.3 SiCH.sub.2 CH.sub.2)SiO).sub.4 ; (C.sub.3 F.sub.7 CH.sub.2 O).sub.3 Si(CH.sub.2).sub.2 (CF.sub.2).sub.6 (CH.sub.2).sub.2 Si(OCH.sub.2 C.sub.3 F.sub.7).sub.3 ; (CF.sub.2).sub.6 �(CH.sub.2).sub.2 Si(OCH.sub.2 CF.sub.3).sub.3 !.sub.2 ; C.sub.8 F.sub.17 C.sub.6 H.sub.4 (OCH.sub.3).sub.3 ; C.sub.8 F.sub.17 C.sub.6 H.sub.4 (OCH.sub.2 CF.sub.3).sub.3 ; C.sub.8 F.sub.17 CH.sub.2 CH.sub.2 Si(OCH.sub.3).sub.3 ; C.sub.8 F.sub.17 CH.sub.2 CH.sub.2 Si(OCH.sub.2 C.sub.3 F.sub.7).sub.3 ; ##STR20##
- 15. The fluoropolymer nanocomposite of claim 1 wherein the inorganic oxide precursor is an oligomeric compound selected from the group consisting of: an oligomeric compound having the formula
- Si(OC.sub.a H.sub.2a R.sub.f).sub.4-z O.sub.z /2 (VII)
- wherein:
- z is a number from about 0.5 to about 3.0;
- a is an integer from 1 to about 10; and
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- an oligomeric compound having the formula:
- R.sub.f --(CH.sub.2).sub.y --Si(OR.sup.14).sub.3-z O.sub.z /2(VIII)
- wherein:
- z is a number from about 0.5 to about 3.0;
- y is an integer from 2 to about 10;
- each R.sup.14 is independently C.sub.1 to about C.sub.8 alkyl, C.sub.1 to about C.sub.10 carboxy, C.sub.1 to about C.sub.10 fluorocarboxy or C.sub.a H.sub.2a R.sub.f ;
- a is an integer from 1 to about 10; and
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen;
- an oligomeric compound having the formula:
- R.sub.f --Ar--Si(OR.sup.14).sub.3-z O.sub.z /2 (IX)
- wherein:
- z is a number from about 0.5 to about 3.0;
- each R.sup.14 is independently C.sub.1 to about C.sub.8 alkyl, C.sub.1 to about C.sub.10 carboxy, C.sub.1 to about C.sub.10 fluorocarboxy or C.sub.a H.sub.2a R.sub.f ;
- a is an integer from 1 to about 10;
- Ar is a divalent aromatic radical; and
- R.sub.f has up to about 18 carbon atoms and is selected from the group consisting of:
- (a) C.sub.1 to about C.sub.18 perfluoroalkyl;
- (b) --�CF.sub.2 CF(CF.sub.3)O!.sub.r --CF.sub.2 --CF.sub.2 --CF.sub.3, wherein r is an integer of at least 1;
- (c) --CF.sub.2 --(CF.sub.2 --O).sub.q --CF.sub.3, wherein q is an integer of at least 2; and
- (d) --CH.sub.2 --C(CF.sub.3).sub.2 --CF.sub.2 --CF.sub.2 --CF.sub.3 ;
- each R.sub.f optionally substituted with one or more hydrogen.
- 16. The fluoropolymer nanocomposite of claim 1 wherein the fluoropolymer is selected from the group consisting of: polytetrafluoroethylene; a copolymer derived from tetrafluoroethylene and hexafluoropropylene; a copolymer derived from tetrafluoroethylene and perfluoromethylvinylether; a copolymer derived from tetrafluoroethylene and at least one perfluoroalkylvinylether; a copolymer derived from tetrafluoroethylene and 2,2-bis(trifluoromethyl)-4,5-difluoro-1,3-dioxole; and a copolymer derived from tetrafluoroethylene and hexafluoropropylene oxide.
- 17. The fluoropolymer nanocomposite of claim 16 wherein the fluoropolymer is the copolymer derived from tetrafluoroethylene and hexafluoropropylene or a copolymer derived from tetrafluoroethylene and 2,2-bis(trifluoromethyl)-4,5-difluoro-1,3-dioxole.
- 18. A process for the preparation of a fluoropolymer nanocomposite comprising (a) a fluoropolymer phase comprising at least one fluoropolymer; and (b) a partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase and exhibiting no particles or substantially all particles having a particle size of less than about 75 nm; comprising:
- (a) contacting at least one fluoropolymer soluble in a fluorinated solvent with at least one inorganic oxide precursor soluble in the fluorinated solvent and an optional gelling agent in the presence of the fluorinated solvent to form a solution;
- (b) allowing the inorganic oxide precursor to partially or fully cross-link to form an inorganic oxide phase dispersed within a fluoropolymer phase; and
- (c) optionally, isolating the fluoropolymer nanocomposite.
- 19. The process of claim 18 wherein the fluorinated solvent is selected from the group consisting of: perfluoro(butyl THF), a mixture of perfluorotrialkylamines, C.sub.3 F.sub.7 OCHFCF.sub.3, hexafluorobenzene, perfluorophenanthrene, perfluoromethylcyclohexane, and perfluoro(n-ethylmorpholine).
- 20. The process of claim 18 wherein the gelling agent is selected from the group consisting of: trifluoroacetic acid, perfluoropropionic acid, and trifluoromethanesulfonic acid.
- 21. The process of claim 18 wherein the gelling agent is formic acid in tetrahydrofuran or in methylene chloride and the gelling agent is contacted within the inorganic oxide precursor prior to contact with the fluoropolymer and fluorinated solvent.
- 22. A coating composition, comprising a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent.
- 23. A coated substrate wherein the coating comprises a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent.
- 24. The coated substrate of claim 23 wherein the substrate is selected from the group consisting of: glass, ceramic, plastic, rubber, elastomer, wood and metal.
- 25. A coated substrate wherein the coating is a multilayer coating comprising:
- a primer, a top coat, and optionally one or more intermediate coats between the primer and the topcoat, wherein the topcoat is a fluoropolymer and the primer is a coating comprising, a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent.
- 26. The coated substrate of claim 25 wherein the substrate is selected from the group consisting of: glass, ceramic, plastic, rubber, elastomer, wood and metal.
- 27. The coated substrate of claim 25 wherein the topcoat is a co-polymer derived from tetrafluoroethylene and bis 2,2-(trifluoromethyl)-4,5-difluoro-1,3-dioxole.
- 28. The coated substrate of claim 25 wherein the topcoat is a co-polymer derived from tetrafluoroethylene and hexafluoropropylene.
- 29. The coated substrate of claim 25 wherein the topcoat is a co-polymer derived from tetrafluoroethylene and at least one perfluoroalkylvinylether.
- 30. An anti-reflective coating for an optoelectronic display device, comprising: a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent.
- 31. The anti-reflective coating of claim 30 wherein the fluoropolymer is a co-polymer derived from tetrafluoroethylene and bis-2,2-(trifluoromethyl)-4,5-difluoro-1,3-dioxole.
- 32. The anti-reflective coating of claim 30 wherein the fluoropolymer is a copolymer derived from tetrafluoroethylene and at least one perfluoroalkylvinylether.
- 33. An interlayer dielectric coating having improved dimensional stability and improved bonding to metal top coats after thermal cycling, comprising: a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent.
- 34. The interlayer dielectric coating of claim 33 wherein the fluoropolymer is a co-polymer derived from tetrafluoroethylene and bis-2,2-(trifluoromethyl)-4,5-difluoro-1,3-dioxole.
- 35. The interlayer dielectric coating of claim 33 wherein the fluoropolymer is a co-polymer derived from tetrafluoroethylene and at least one perfluoroalkylvinylether.
- 36. An article of cookware comprising a metal substrate coated with a scratch-resistant, non-stick coating system wherein said coating system comprises a primer applied to a metal substrate and a topcoat adhered to said primer,
- said primer comprising: a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent; and said topcoat comprising a copolymer derived from tetrafluoroethylene and 2,2-bis(trifluoromethyl)-4,5-difluoro-1,3-dioxole.
- 37. The article of claim 36 wherein the fluoropolymer is a co-polymer derived from tetrafluoroethylene and bis-2,2-(trifluoromethyl)-4,5-difluoro-1,3-dioxole.
- 38. The article of claim 36 wherein the fluoropolymer is a co-polymer derived from tetrafluoroethylene and at least one perfluoroalkylvinylether.
- 39. An article of cookware comprising a metal substrate coated with a scratch-resistant, non-stick coating system wherein said coating system comprises a primer applied to a metal substrate and a topcoat adhered to said primer,
- said primer comprising: a fluoropolymer nanocomposite, said fluoropolymer nanocomposite comprising, a fluoropolymer phase comprising at least one fluoropolymer, and at least one partially or fully cross-linked inorganic oxide phase prepared from at least one inorganic oxide precursor, said inorganic oxide phase being dispersed within said fluoropolymer phase, said inorganic oxide phase exhibiting either no particles or substantially all particles present in the inorganic oxide phase having a particle size of less than about 75 nm, the fluoropolymer and the inorganic oxide precursor being soluble in a fluorinated solvent; and said topcoat comprising a copolymer derived from tetrafluoroethylene and hexafluoropropylene.
- 40. The cookware of claim 39 wherein the fluoropolymer is a copolymer derived from tetrafluoroethylene and at least one perfluoroalkylvinylether.
Parent Case Info
This application claims the priority benefit of U.S. Provisional application Ser. No. 60/000,571, filed Jun. 28, 1995 and U.S. Provisional application Ser. No. 60/002,054, filed Aug. 9, 1995.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
707 393 |
Jun 1941 |
DEX |
9323348 |
Nov 1993 |
WOX |