Claims
- 1. A molecular complex comprising:
(a) at least one first molecule, comprising:
(i) a release agent polymeric molecule; and (ii) at least one first complexing moiety that comprises a first complexing functional group; (b) at least one second molecule, comprising:
(i) at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent, antioxidant, and antistat polymeric and nonpolymeric molecules; and (ii) at least one second complexing moiety that comprises a second complexing functional group; and (c) at least one complexed functionality;
each release agent polymeric molecule having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures;
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol.
- 2. The molecular complex of claim 1, wherein:
(a) the complexing acid functional group comprises at least one member selected from the group consisting of a carboxyl group, a sulfonic acid group, a sulfonamide group, a para-phenol group, a meta-phenol group, a monoalkyl phosphate ester group, and a dialkyl phosphate ester group having the formula 15where R is selected from the group consisting of C1-C8 hydrocarbyl groups; and (b) the complexing base functional group comprises at least one member selected from the group consisting of a secondary amine group, a tertiary amine group, a primary amine group, a para-pyridine group, a meta-pyridine group, a pyrrole group, and a phosphonium group having the formula 16where R1, R2, and R3 are the same or different, and are selected from the group consisting of C1-C8 hydrocarbyl groups.
- 3. The molecular complex of claim 2, wherein the complexing acid functional group comprises a sulfonic acid group, and the complexing base functional group comprises a primary amine group.
- 4. The molecular complex of claim 2, wherein the complexing acid functional group comprises a carboxyl group, and the complexing base functional group comprises a primary amine group.
- 5. The molecular complex of claim 1, wherein:
(a) the at least one first molecule, comprising a release agent polymeric molecule, further comprises a polyorganosiloxane complexor; and (b) the at least one second molecule comprises at least one member selected from the group consisting of wetting agent polymeric and nonpolymeric molecules, and further comprises at least one member selected from the group consisting of hydrocarbon complexors.
- 6. The molecular complex of claim 1, wherein:
(a) the at least one first molecule, comprising a release agent polymeric molecule, further comprises a polyorganosiloxane complexor; and (b) the at least one second molecule comprises at least one member selected from the group consisting of wetting agent polymeric and nonpolymeric molecules, and further comprises at least one member selected from the group consisting of perfluoroalkyl complexors and perfluoropolyether complexors.
- 7. The molecular complex of claim 1, wherein the at least one second molecule comprises at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent polymeric and nonpolymeric molecules.
- 8. The molecular complex of claim 1, wherein the at least one first molecule has a viscosity of not more than about 250,000 cp at fusing process temperatures.
- 9. The molecular complex of claim 1, wherein the noncovalent bond comprises a member selected from the group consisting of hydrogen and ionic bonds.
- 10. The molecular complex of claim 1, wherein:
(a) the at least one first molecule comprises at least one complexor selected from the group consisting of polyorganosiloxane complexors hydrocarbon complexors, and perfluoropolyether complexors; and (b) the at least one second.molecule comprises at least one complexor selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors.
- 11. A molecular complex comprising:
(a) at least one first complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one first complexing moiety that comprises a first complexing functional group; (b) at least one second complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexorsi and perfluoropolyether complexors; and (ii) at least one second complexing moiety that comprises a second complexing functional group; and (c) at least one complexed functionality;
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and
the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol.
- 12. The molecular complex of claim 11, wherein:
(a) the at least one first complexor:
(i) has a surface energy of not more than about 35 dynes/cm; (ii) is liquid, and has a viscosity of not more than about 250,000 cp, at fusing process temperatures; and (iii)is heat stable at fusing process temperatures; and (b) the noncovalent bond comprises a member selected from the group consisting of hydrogen and ionic bonds.
- 13. The molecular complex of claim 12, wherein the complexing acid functional group comprises a sulfonic acid group, and the compiexing base functional group comprises a primary amine group.
- 14. The molecular complex of claim 12, wherein the complexing acid functional group comprises a carboxyl group, and the complexing base functional group comprises a primary amine group.
- 15. The molecular complex of claim 12, wherein the at least one first complexor comprises at least one polyorganosiloxane complexor, and the at least one second complexor comprises at least one member selected from the group consisting of hydrocarbon complexors and perfluoropolyether complexors.
- 16. The molecular complex of claim 15, wherein:
(a) the at least one polyorganosiloxane complexor comprises a polydimethylsiloxane complexor having one first complexing moiety, the first complexing functional group comprising a primary amine group; (b) the at least one second complexor comprises a hydrocarbon complexor:
(1) having one second complexing moiety, the second complexing functional group comprising a complexing acid functional group selected from the group consisting of carboxyl and sulfonic acid groups; and (2) comprising a member selected from the group consisting of:
(A) hydrocarbon complexors comprising at least about 30 C. atoms and having one second complexing moiety, the second complexing functional group comprising a carboxyl group; (B) saturated monocarboxylic fatty acids having the formula H3C(CH2)nCOOH wherein n is 4 to 28; (C) saturated perfluoroalkanoic mono-carboxylic acids having the formula F3C(CF2)nCOOH wherein n is 4 to 28; (D) saturated monosulfonic acids having the formula H3C(CH2)nSO3H wherein n is 4 to 28; (E) saturated aryl-alkyl monosulfonic acids having the formula H3C(CH2)nC6H4SO3H wherein n is 1 to 28; (F) saturated perfluoroalkyl mono-sulfonic acids having the formula F3C(CF2)nSO3H wherein n is 4 to 28; and (G) monosulfonic acids having the formula F3C(CF2)nR15SO3H wherein R15 is selected from the group consisting of C1-C40 hydrocarbyl groups; the F3C, CF2, and R15 groups contain a total of at least 4 carbons; and n is 0 to 28; and
(c) the at least one complexed functionality comprises a complexed functionality comprising the primary amine group and the complexing acid functional group.
- 17. The molecular complex of claim 15, wherein:
(a) the at least one polyorganosiloxane complexor comprises a polydimethylsiloxane complexor having two first complexing moieties, each first complexing functional group comprising a primary amine group; (b) the at least one second complexor comprises two hydrocarbon complexors, each hydrocarbon complexor:
(1) having one second complexing moiety, each second complexing functional group comprising a complexing acid functional group selected from the group consisting of carboxyl and sulfonic acid groups; and (2) comprising a member selected from the group consisting of:
(A) hydrocarbon complexors comprising at least about 30 C. atoms and having one second complexing moiety, the second complexing functional group comprising a carboxyl group; (B) saturated monocarboxylic fatty acids having the formula H3C(CH2)nCOOH wherein n is 4 to 28; (C) saturated perfluoroalkanoic mono-carboxylic acids having the formula F3C(CF2)nCOOH wherein n is 4 to 28; (D) saturated monosulfonic acids having the formula H3C(CH2)nSO3H wherein n is 4 to 28; (E) saturated aryl-alkyl monosulfonic acids having the formula H3C(CH2)nC6H4SO3H (F) saturated perfluoroalkyl mono-sulfonic acids having the formula F3C(CF2)nSO3H wherein n is 4 to 28; and (G) monosulfonic acids having the formula F3C(CF2)nR15SO3H wherein R15 is selected from the group consisting of C1-C40 hydrocarbyl groups; the F3C, CF2, and R15 groups contain a total of at least 4 carbons; and n is 0 to 28; and
(c) the at least one complexed functionality comprises two complexed functionalities;
(1) one complexed functionality comprising:
(A) one primary amine group of the polydimethylsiloxane complexor; and (B) a complexing acid functional group of one hydrocarbon complexor; and (2) the other complexed functionality comprising:
(A) the other primary amine group of the polydimethylsiloxane complexor; and (B) a complexing acid functional group of the other hydrocarbon complexor.
- 18. The molecular complex of claim 15, wherein:
(a) the at least one polyorganosiloxane complexor comprises two polydimethylsiloxane complexors, each polydimethylsiloxane complexor having one first complexing moiety, each first complexing functional group comprising a primary amine group; (b) the at least one second complexor comprises a hydrocarbon complexor having two second complexing moieties, each second complexing functional group comprising a complexing acid functional group selected from the group consisting of carboxyl and sulfonic acid groups; and
(2) comprising a member selected from the group consisting of:
(A) saturated dicarboxylic fatty acids having the formula HOOC(CH2)nCOOH wherein n is 4 to 28; (B) saturated disulfonic acids having the formula HO3S(CH2)nSO3H wherein n is 4 to 28; (C) saturated perfluoroalkanoic di-carboxylic acids having the formula HOOC(CF2)nCOOH wherein n is 4 to 28; and (D) perfluoroalkyl disulfonic acids having the formula HO3SR16(CF2)nR17SO3H wherein R16 and R17 are the same or different, and are selected from the group consisting of C1-C40 hydrocarbyl groups; the CF2, R16 and R17 groups contain a total of at least 4 carbon atoms; and n is 2 to 28; and
(c) the at least one complexed functionality comprises two complexed functionalities;
(1) one complexed functionality comprising:
(A) a primary amine group of one polydimethylsiloxane complexor; and (B) one complexing acid functional group of the hydrocarbon complexor; and (2) the other complexed functionality comprising:
(A) a primary amine group of the other polydimethylsiloxane complexor; and (B) the other complexing acid functional group of the hydrocarbon complexor.
- 19. The molecular complex of claim 15, wherein the molecular weight of the at least one polyorganosiloxane complexor comprises more than 50 percent of the molecular weight of the complex.
- 20. The molecular complex of claim 15, wherein the at least one first complexing moiety further comprises a C3 or greater hydrocarbyl group, the C3 or greater hydrocarbyl group comprising at least three carbon atoms separating the first complexing functional group from the polyorganosiloxane.
- 21. The molecular complex of claim 15, wherein the at least one polyorganosiloxane complexor has the formula
- 22. The molecular complex of claim 15, wherein:
(a) each first complexing functional group comprises a complexing base functional group; and (b) each second complexing functional group comprises a complexing acid functional group.
- 23. The molecular complex of claim 15, wherein:
(a) each first complexing functional group comprises a complexing acid functional group; and (b) each second complexing functional group comprises a complexing base functional group.
- 24. The molecular complex of claim 15, wherein:
(a) the at least one second complexor comprises at least one hydrocarbon complexor: (b) for each polyorganosiloxane complexor and each hydrocarbon complexor, the mole ratio of polyorganosiloxane complexor Si atoms to hydrocarbon complexor C atoms is from about 1:1.5 to about 30:1.
- 25. The molecular complex of claim 15, wherein:
(a) the at least one first complexor comprises a first complexor comprising at least two first complexing moieties; (b) the at least one second complexor comprises at least two second complexors; and (c) the at least one complexed functionality comprises at least two complexed functionalities;
(1) one complexed functionality comprising:
(A) a first complexing functional group of the first complexor; and (B) a second complexing functional group of one of the at least two second complexors; and (2) another complexed functionality comprising:
(A) another first complexing functional group of the first complexor, and (B) a second complexing functional group of another of the at least two second complexors.
- 26. The molecular complex of claim 25, wherein:
(a) each first complexing functional group comprises a complexing base functional group; and (b) each second complexing functional group comprises a complexing acid functional group.
- 27. The molecular complex of claim 25, wherein:
(a) each first complexing functional group comprises a complexing acid functional group; and (b) each second complexing functional group comprises a complexing base functional group.
- 28. The molecular complex of claim 15, wherein:
(a) the at least one first complexor comprises at least two first complexors; (b) the at least one second complexor comprises a second complexor comprising at least two second complexing moieties; and (c) the at least one completed functionality comprises at least two complexed functionalities;
(1) one complexed functionality comprising:
(A) a second complexing functional group of the second complexor; and (B) a first complexing functional group of one of the at least two first complexors; and (2) the other complexed functionality comprising:
(A) another second complexing functional group of the second complexor, and (B) a first complexing functional group of another of the at least two first complexors.
- 29. The molecular complex of claim 28, wherein:
(a) each first complexing functional group comprises a complexing base functional group; and (b) each second complexing functional group comprises a complexing acid functional group.
- 30. The molecular complex of claim 28, wherein:
(a) each first complexing functional group comprises a complexing acid functional group; and (b) each second complexing functional group comprises a complexing base functional group.
- 31. The molecular complex of claim 15, wherein:
(a) the at least one first complexor comprises at least one polydimethylsiloxane complexor; (b) the at least one second complexor comprises at least one alkyl complexor; and (c) the at least one complexed functionality comprises a first complexing functional group of a polydimethylsiloxane complexor, and a second complexing functional group of an alkyl complexor.
- 32. The molecular complex of claim 31, wherein:
(a) the at least one polydimethylsiloxane complexor comprises a polydimethylsiloxane complexor comprising at least two first complexing moieties; (b) the at least one second complexor comprises at least two alkyl complexors; and (c) the at least one complexed functionality comprises at least two complexed functionalities;
(1) one complexed functionality comprising:
(A) a first complexing functional group of the polydimethylsiloxane complexor; and (B) a second complexing functional group of one of the at least two alkyl complexors; and (2) another complexed functionality comprising:
(A) another first complexing functional group of the polydimethylsiloxane complexor; and (B) a second complexing functional group of another of the at least two alkyl complexors.
- 33. The molecular complex of claim 31, wherein for each polydimethylsiloxane complexor and each alkyl complexor, the mole ratio of polyalkylsiloxane complexor Si atoms to alkyl complexor C atoms is from about 2:1 to about 20:1.
- 34. The molecular complex of claim 31, wherein for each poly-dimethylsiloxane complexor and each alkyl complexor, the ratio of polydimethylsiloxane complexor molecular weight to alkyl complexor molecular weight is from about 12:1 to about 55:1.
- 35. The molecular complex of claim 15, wherein:
(a) the at least one first complexor comprises at least one polydimethylsiloxane complexor; (b) the at least one second complexor comprises at least one perfluoroalkyl complexor; and (c) the at least one complexed functionality comprises a first complexing functional group of a polydimethylsiloxane complexor, and a second complexing functional group of a perfluoroalkyl complexor.
- 36. The molecular complex of claim 35, wherein:
(a) the at least one polydimethylsiloxane complexor comprises a polydimethylsiloxane complexor comprising at least two first complexing moieties; (b) the at least one second complexor comprises at least two perfluoroalkyl complexors; and (c) the at least one complexed functionality comprises at least two complexing functionalities;
(1) one complexed functionality comprising:
(A) a first complexing functional group of the polydimethylsiloxane complexor; and (B) a second complexing functional group of one of the at least two perfluoroalkyl complexors; and (2) another complexed functionality comprising:
(A) another first complexing functional group of the polydimethylsiloxane complexor; and (B): a second complexing functional group of another of the at least two perfluoroalkyl complexors.
- 37. The molecular complex of claim 35, wherein each perfluoroalkyl complexor comprises from about 8 C. atoms to about 20 C. atoms.
- 38. The molecular complex of claim 35, wherein for each polydimethylsiloxane complexor and each perfluoroalkyl complexor, the mole ratio of polydimethylsiloxane complexor Si atoms to perfluoroalkyl complexor C atoms is from about 4:1 to about 70:1.
- 39. The molecular complex of claim 15, wherein:
(a) the at least one first complexor comprises at least one polydimethylsiloxane complexor; (b) the at least one second complexor comprises at least one perfluoropolyether complexor; and (c) the at least one complexed functionality comprises a first complexing functional group of a poly-dimethylsiloxane complexor, and a second complexing functional group of a perfluoropolyether complexor.
- 40. The molecular complex of claim 39, wherein:
(a) the at least one polydimethylsiloxane complexor comprises a polydimethylsiloxane complexor comprising at least two first complexing moieties; (b) the at least one second complexor comprises at least two perfluoropolyether complexors; and (c) the at least one complexed functionality comprises at least two complexing functionalities;
(1) one complexed functionality comprising:
(A) a first complexing functional group of the polydimethylsiloxane complexor; and (B) a second complexing functional group of one of the at least two perfluoropolyether complexors; and (2) another complexed functionality comprising:
(A) another first complexing functional group of the polydimethylsiloxane complexor; and (B) a second complexing functional group of another of the at least two perfluoropolyether complexors.
- 41. The molecular complex of claim 39, wherein each perfluoropolyether block has a molecular weight of from about 400 to about 8,000.
- 42. The molecular complex of claim 39, wherein for each polydimethylsiloxane block and each perfluoropolyether block, the mole ratio of polydimethylsiloxane block Si atoms to perfluoropolyether block C atoms is from about 2:1 to about 70:1.
- 43. A process for preparing a molecular complex comprising:
(a) at least one first molecule, comprising:
(i) a release agent polymeric molecule; and (ii) at least one first complexing moiety that comprises a first complexing-functional group; (b) at least one second molecule, comprising:
(i) at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent, antioxidant, and antistat polymeric and nonpolymeric molecules; and (ii) at least one second complexing moiety that comprises a second complexing functional group; and (c) at least one complexed functionality;
each release agent polymeric molecule having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures;
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol; the process comprising reacting reactants comprising the at least one first molecule and the at least one second molecule, wherein the first and second complexing functional groups complex to form the at least one complexed functionality.
- 44. The process of claim 43, wherein the at least one second molecule comprises at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent polymeric and nonpolymeric molecules.
- 45. A process for preparing a molecular complex comprising:
(a) at least one first complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one first complexing moiety that comprises a first complexing functional group; (b) at least one second complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one second complexing moiety that comprises a second complexing functional group; and (c) at least one complexed functionality;
the at least one first complexor having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol; the process comprising reacting reactants comprising the at least one first complexor and the at least one second complexor, wherein the first and second complexing functional groups complex to form the at least one complexed functionality.
- 46. The process of claim 45, wherein the at least one first complexor comprises at least one polyorganosiloxane complexor, and the at least one second complexor comprises at least one member selected from the group consisting of hydrocarbon complexors and perfluoropolyether complexors.
- 47. The process of claim 46, wherein the complexing acid functional group comprises a carboxyl group, and the complexing base functional group comprises a primary amine group.
- 48. The process of claim 47, wherein:
(a) the at least one first complexor and the at least one second complexor are added together; (b) the at least one first complexor and the at least one second complexor are brought to a temperature sufficient to bring each complexor not in solution to a liquid state; (c) the at least one first complexor and the at least one second complexor are blended to a form a mixture; and (d) the mixture is maintained at a temperature below that which will effect covalent bonding of the at least one complexed functionality, and below that which will effect degradation of the molecular complex;
the ratio of carboxyl groups to primary amine groups being sufficiently greater than 1:1 so that, at the completion of the process, there are essentially no remaining uncomplexed primary amine groups.
- 49. The process of claim 46, wherein the complexing acid functional group comprises a sulfonic acid group, and the complexing base functional group comprises a primary amine group.
- 50. The process of claim 49, wherein:
(a) the at least one first complexor and the at least one second complexor are added together; (b) the at least one first complexor and the at least one second complexor are brought to a temperature sufficient to bring each complexor not in solution to a liquid state; (c) the at least one first complexor and the at least one second complexor are blended to a form a mixture; and (d) the mixture is maintained at a temperature below that which will effect degradation of the molecular complex;
the ratio of sulfonic acid groups to primary amine groups being sufficiently greater than 1:1 so that, at the completion of the process, there are essentially no remaining uncomplexed primary amine groups.
- 51. A treating composition for application to fuser members in toner fusing systems, the treating composition comprising a molecular complex comprising:
(a) at least one first molecule, comprising:
(i) a release agent polymeric molecule; and (ii) at least one first complexing moiety that comprises a first complexing functional group; (b) at least one second molecule, comprising:
(i) at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent, antioxidant, and antistat polymeric and nonpolymeric molecules; and (ii) at least one second complexing moiety that comprises a second complexing functional group; and (c) at least one complexed functionality;
each release agent polymeric molecule having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being beat stable at fusing process temperatures;
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol.
- 52. The treating composition of claim 51, wherein the at least one second molecule comprises at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent polymeric and nonpolymeric molecules.
- 53. A treating composition for application to fuser members in toner fusing systems, the treating composition comprising a molecular complex comprising:
(a) at least one first complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one first complexing moiety that comprises a first complexing functional group; (b) at least one second complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one second complexing moiety that comprises a second complexing functional group; and (c) at least one complexed functionality;
the at least one first complexor having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol.
- 54. The treating composition of claim 53, wherein the at least one first complexor comprises at least one polyorganosiloxane complexor, and the at least one second complexor comprises at least one member selected from the group consisting of hydrocarbon complexors and perfluoropolyether complexors.
- 55. The treating composition of claim 54, wherein the molecular weight of the at least one polyorganosiloxane complexor comprises at least 75 percent of the molecular weight of the complex;
the treating composition further comprising a polyorganosiloxane release agent.
- 56. The treating composition of claim 55, wherein:
(a) the at least one polyorganosiloxane complexor comprises at least one nonfunctional polydimethylsiloxane complexor; and (b) the polyorganosiloxane release agent comprises a nonfunctional polydimethylsiloxane; the molecular complex comprising not more than about 50 percent by volume of the treating composition.
- 57. The treating composition of claim 55, wherein the polyorganosiloxane release agent comprises at least 75 pecent by weight of the treating composition.
- 58. The treating composition of claim 57, wherein the the at least one second complexor comprises at least one member selected from the group consisting of fluorocarbon complexors and perfluoropolyether complexors.
- 59. A process for fusing toner residing on a substrate to the substrate, the process comprising:
(a) applying, to the surface of a fuser member, a release agent composition comprising a molecular complex, the molecular complex comprising:
(i) at least one first molecule, comprising:
(A) a release agent polymeric molecule; and (B) at least one first complexing moiety that comprises a first complexing functional group; (ii) at least one second molecule, comprising:
(A) at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent, antioxidant, and antistat polymeric and nonpolymeric molecules; and (B) at least one second complexing moiety that-comprises a second complexing functional group; and (iii) at least one complexed functionality;
each release agent polymeric molecule having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures;
the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the complexing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol; and (b) contacting the toner with the fuser member surface bearing the composition.
- 60. A process for fusing toner residing on a substrate to the substrate, the process comprising:
(a) applying, to the surface of a fuser member, a release agent composition comprising a molecular complex, the molecular complex comprising:
(i) at least one first complexor, comprising:
(A) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (B) at least one first complexing moiety that comprises a first complexing functional group; (ii) at least one second complexor, comprising:
(A) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (B) at least one second complexing moiety that comprises a second complexing functional group; and (iii) at least one complexed functionality;
the at least one first complexor having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures
the first completing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; and the at least one complexed functionality comprising the completing acid functional group and the complexing base functional group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol; and (b) contacting. the toner with the fuser member surface bearing the composition.
- 61. The process of claim 60, wherein:
(a) the fuser member comprises a polyfluorocarbon surface; (b) the at least one first complexor comprises at least one polyorganosiloxane complexor; and (c) the at least one second complexor comprises at least one member selected from the group consisting of fluorocarbon complexors and perfluoropolyether complexors.
- 62. A process for fusing toner residing on a substrate to the substrate, employing:
(a) at least one first molecule, comprising:
(i) a release agent polymeric molecule; and (ii) at least one first complexing moiety that comprises a first complexing functional group; and (b) at least one second molecule, comprising:
(i) at least one member selected from the group consisting of release agent polymeric molecules, and wetting agent, antioxidant, and antistat polymeric and nonpolymeric molecules; and (ii) at least one second complexing moiety that comprises a second complexing functional group;
each release agent polymeric molecule having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures; the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; the complexing acid functional group comprising a sulfonic acid group, and the complexing base functional group comprising a primary amine group; whereby the at least one first molecule comprises one of a sulfonic acid functional molecule and a primary amino functional molecule, and the at least one second molecule comprises the other of the sulfonic acid functional molecule and the primary amino functional molecule; the process comprising:
applying the primary amino functional molecule to the surface of a fuser member; applying the sulfonic acid functional molecule to the surface of the fuser member, at a position subsequent to the position for application of the primary amino functional molecule, whereby the sulfonic acid functional molecule is added to the primary amino functional molecule on the surface of the fuser member; and reacting the primary amino functional molecule and the sulfonic acid functional molecule on the surface of the fuser member, to form a molecular complex comprising the at least one first molecule, the at least one second molecule, and at least one complexed functionality, wherein the sulfonic acid group and the primary amine group complex to form the at least one complexed functionality; and contacting the toner with the fuser member surface bearing the molecular complex; the at least one complexed functionality comprising the sulfonic acid group and the primary amine group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol; and the ratio of sulfonic acid groups to primary amine groups being sufficiently greater than 1:1 so that at least essentially all of the primary amine groups are complexed on the surface of the fuser member, before reaching the substrate or toner residing on the substrate.
- 63. A process for fusing toner residing on a substrate to the substrate, employing:
(a) at least one first complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one first complexing moiety that comprises a first complexing functional group; and (b) at least one second complexor, comprising:
(i) at least one member selected from the group consisting of polyorganosiloxane complexors, hydrocarbon complexors, and perfluoropolyether complexors; and (ii) at least one second complexing moiety that comprises a second complexing functional group;
the at least one first complexor having a surface energy of not more than about 35 dynes/cm, being liquid at fusing process temperatures, and being heat stable at fusing process temperatures; the first complexing functional group comprising one of a complexing acid functional group and a complexing base functional group, and the second complexing functional group comprising the other of the complexing acid functional group and the complexing base functional group; the complexing acid functional group comprising a sulfonic acid group, and the complexing base functional group comprising a primary amine group; whereby the at least one first complexor comprises one of a sulfonic acid functional complexor and a primary amino functional complexor, and the at least one second complexor comprises the other of the sulfonic acid functional complexor and the primary amino functional complexor; the process comprising:
applying the primary amino functional complexor to the surface of a fuser member; applying the sulfonic acid functional complexor to the surface of the fuser member, at a position subsequent to the position for application of the primary amino functional complexor, whereby the sulfonic acid functional complexor is added to the primary amino functional complexor on the surface of the fuser member; and reacting the primary amino functional complexor and the sulfonic acid functional complexor on the surface of the fuser member, to form a molecular complex comprising the at least one first complexor, the at least one second complexor, and at least one complexed functionality, wherein the sulfonic acid group and the primary amine group complex to form the at least one complexed functionality; and contacting the toner with the fuser member surface bearing the molecular complex; the at least one complexed functionality comprising the sulfonic acid group and the primary amine group, bonded by a noncovalent bond having a bond energy of at least about 20 kJ/mol; and the ratio of sulfonic acid groups to primary amine groups being sufficiently greater than 1:1 so that at least essentially all of the primary amine groups are complexed on the surface of the fuser member, before reaching the substrate or toner residing on the substrate.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit under 35 USC §119(e) of prior co-pending U.S. Provisional Patent Application No. 60/386,021, filed Jun. 5, 2002. This provisional patent application is incorporated herein in its entirety, by reference thereto.
[0002] Filed concurrently with this application is the application entitled “Block Polyorganosiloxane Block Organomer Polymers And Release Agents”, Applicant's Docket Nos. 10272 and PAT00011. This concurrently filed application is incorporated herein in its entirety, by reference thereto.
Provisional Applications (1)
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Number |
Date |
Country |
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60386021 |
Jun 2002 |
US |