Claims
- 1. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:w≧1; R1,R1′,R2,R3=H or C1-4 alkyl; a,b >0; c,d ≧0; R0=a group capable of forming hydrogen or covalent bonds with cellulose; Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety; A1=—H, —COOH; R4=a Z1—R6 radical, where: Z1=any radical capable of bonding the R6 group to the polymer, R6=a block or graft copolymer containing the amphiphilic hydrocarbon moiety; R5=Z1—R10—W, where:Z1=any radical capable of bonding the R10 group to the polymer; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13, where R11,R12,R13 are C1-4 alkyl groups.
- 2. The paper sheet of claim 1 wherein R0 is selected from the group consisting of CONH2, —COOH, —COOH−M+, —OH, —CONHCHOHCHO, and mixtures thereof, wherein M+ is a counter ion.
- 3. The paper sheet of claim 1 wherein Q4 is of the form —Z2—Q4—Z2′— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 4. The paper sheet of claim 1 wherein Z1 is selected from the group consisting of aryl, CH2—, —COO—, —CONR′—, —O—, —S—, —OSO2O—, —CONHCO—, and —CONHCHOHCHOO—, and where R′ is H or C1-4 alkyl.
- 5. The paper sheet of claim 1 wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 6. The paper sheet of claim 1 wherein R10 is —(CH2CH2)— or —C(CH3)CH2CH2—.
- 7. The paper sheet of claim 1 wherein A1 is —H and R0 is —CONH2.
- 8. The paper sheet of claim 1 wherein A1 is —H and R0 is —CONHCHOHCHO.
- 9. The paper sheet of claim 1 wherein R0 consists of both —CONH2 and CONHCHOHCHO groups.
- 10. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:w≧1; R1,R1′,R2,R3=H or C1-4 alkyl; a,b>0; c,d≧0 R0=a group capable of forming hydrogen or covalent bonds with cellulose; Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety; A1=—H, —COOH; R4=a Z1—R6 radical, where: Z1=any radical capable of bonding the R6 group to the polymer; R6=an amrhiphilic hydrocarbon radical.
- 11. A method of making a paper sheet comprising the steps of: (a) forming an aqueous suspension of papernaking fibers; (b) depositing the aqueous suspension of papermaking fibers onto a forming fabric to form a web; and (c) dewatering and drying the web to form a paper sheet, wherein a synthetic polymer is added to the aqueous suspension of fibers and/or the web, said polymer having the following structure: where:w≧1; R1,R1′,R2,R3=H or C1-4 alkyl; a,b>0; c,d≧0; R0=a group capable of forming hydrogen or covalent bonds with cellulose; Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety; A1=—H, —COOH; R4=a Z1—R6 radical, where:Z1=any radical capable of bonding the R6 group to the polymer; R6=a block or graft copolymer containing the amphiphilic hydrocarbon moiety R5=Z1—R10—W, where:Z1=any radical capable of bonding the R10 group to the polymer; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13, where R11, R12,R13 are C1-4 alkyl groups.
- 12. The method of claim 11 wherein R0 is selected from the group consisting of CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO, and mixtures thereof, wherein M+ is a counter ion.
- 13. The method of claim 11 wherein Q4 is of the form —Z2—Q4—Z2′— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 14. The method of claim 11, wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONR′—, —O—, —S—, —OSO2O—, —CONHCO—, and —CONHCHOHCHOO—, and where R′ is H or C1-4 alkyl.
- 15. The method of claim 11, wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 16. The method of claim 11 wherein R10 is —(CH2Ch2)— or —C(CH3)2CH2CH2—.
- 17. The method of claim 11 wherein A1 is —H and R0 is —CONH2.
- 18. The method of claim 11 wherein A1 is —H and R0 is —CONHCHOHCHO.
- 19. The method of claim 11 wherein R0 consists of both —CONH2 and CONHCHOHCHO groups.
- 20. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:a,b>0;—c≧0; d>0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated viny monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 21. The paper sheet of claim 20 wherein the pendant group on Q1 capable of forming hydrogen or covalent bonds is selected from the group consisting of —CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO and mixtures thereof, wherein M+ is a counter ion.
- 22. The paper sheet of claim 20 wherein Q2 is of the form —Z1—Q2—Z1′— where Z1, Z1′ are bridging radicals, which can be the same or different.
- 23. The paper sheet of claim 20 wherein Q4 is of the form —Z2—Q4—Z2′— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 24. The paper sheet of claim 20 wherein Q4 is a radical of the form —CHR1CR30R1′— whereinR30 is an aliphatic polyether derivative of the formula —[(CR2R2′)xO]y—R3 where:R1,R1′ is —H, C1-4 alkyl; R2,R2′ is —H or —CH3; x≧2; y≧2; and R3 is a terminal group selected from the group consisting of —CH3, —H, —C2H5, and —NH2.
- 25. The paper sheet of claim 20 wherein Q3 is
- 26. The paper sheet of claim 20 wherein Q3 is a radical of the form —CHR1CR20R1′—wherein:R20=a pendant group of the form Z1—R10—W where Z1 is a bridging radical capable of bonding the R10 group to the polymer; R1,R1′=H or a C1-4 alkyl group; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13 where R11,R12,R13 is a C1-4 alkyl group.
- 27. The paper sheet of claim 26 wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 28. The paper sheet of claim 26 wherein R10 is —(CH2CH2)— or —C(CH3)2CH2CH2—.
- 29. The paper sheet of claim 20 wherein “c” is 0.
- 30. The paper sheet of claim 20 wherein the pendant group on Q1 capable of forming hydrogen bonds is —CONH2.
- 31. The paper sheet of claim 20 twherein the pendant group on Q1 capable of forming covalent bonds is —CONHCHOHCHO.
- 32. The paper sheet of claim 20 wherein Q1 has —CONH2 and —CONHCHOHCHO pendant groups.
- 33. A method of making a paper sheet comprising the steps of: (a) forming an aqueous suspension of papermaking fibers; (b) depositing the aqueous suspension of papermaking fibers onto a forming fabric to form a web; and (c) dewatering and drying the web to form a paper sheet, wherein a synthetic polymer is added to the aqueous suspension of fibers and/or the web, said polymer having the following structure: where:a,b>0; c≧0; d>0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 34. The method of claim 33 wherein the pendant group on Q1 capable of forming hydrogen or covalent bonds is selected from the group consisting of —CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO and mixtures thereof, wherein M+ is a counter ion.
- 35. The method of claim 33 wherein Q2 is of the form —Z1—Q2—Z1′— where Z1, Z1′ are bridging radicals, which can be the same or different.
- 36. The method of claim 33 wherein Q4 is of the form —Z2—Q4—Z2′— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 37. The method of claim 33 wherein Q4 is a radical of the form —CHR1CR30R1′— wherein R30 is an aliphatic polyether derivative of the formula —[(CR2R2′)xO]y—R3 where:R1,R1′ is —H, C1-4 alkyl; R2,R2′ is —H or —CH3; x≧2; y≧2; and R3 is a terminal group selected from the group consisting of —CH3, —H, —C2H5, and —NH2.
- 38. The method of claim 33 wherein Q3 is
- 39. The method of claim 33 wherein Q3 is a radical of the form —CHR1CR20R1′— whereinR20=pendant group of the form Z1—R10—W, where Z1 is a bridging radical capable of bonding the R10 group to the polymer; R1,R1′=H or a C1-4 alkyl group; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13 where R11,R12,R13 is a C1-4 alkyl group.
- 40. The method of claim 39 wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 41. The method of claim 39 wherein R10 is —(CH2CH2)— or —C(CH3)2CH2CH2—.
- 42. The method of claim 33 wherein “C” is 0.
- 43. The method of claim 33 wherein the pendant group on Q1 capable of forming hydrogen bonds is —CONH2.
- 44. The method of claim 33 wherein the pendant group on Q1 capable of forming covalent bonds is —CONHCHOHCHO.
- 45. The method of claim 33 wherein Q1 has —CONH2 and —CONHCHOHCHO pendant groups.
- 46. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:a,b>0; c,d≧0; w≧1; Q1 is selected from the group consisting of —CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO and mixtures thereof, wherein M+ is a counter ion; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 47. The paper sheet of claim 46 wherein Q2 is of the form —Z1—Q2—Z1′— where Z1, Z1′ are bridging radicals, which can be the same or different.
- 48. The paper sheet of claim 46 wherein Q4 is of the form —Z2—Q4—Z2′— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 49. The paper sheet of claim 46 wherein Q4 is a radical of the form —CHR1CR30R1′— whereinR30 is an aliphatic polyether derivative of the formula —[(CR2R2′)xO]y—R3 where:R1,R1′ is —H, C1-4 alkyl; R2,R2′ is —H or —CH3; x≧2; y≧2; and R3 is a terminal group selected from the group consisting of —CH3, —H, —C2H5, and —NH2.
- 50. The paper sheet of claim 46 wherein Q3is
- 51. The paper sheet of claim 46 wherein Q3 is a radical of the form —CHR1CR20R1′— wherein:R20=a pendant group of the form Z1—R10—W where Z1 is a bridging radical capable of bonding the R10 group to the polymer; R1,R1′=H or a C1-4 alkyl group; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13 where R11,R12,R13 is a C1-4 alkyl group.
- 52. The paper sheet of claim 51 wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 53. The paper sheet of claim 51 wherein R10 is —(CH2CH2) or —C(CH3)2CH2CH2—.
- 54. The paper sheet of claim 46 wherein “c” is 0.
- 55. The paper sheet of claim 46 wherein “d” is 0.
- 56. The paper sheet of claim 46 wherein the pendant group on Q1 capable of forming hydrogen bonds is —CONH2.
- 57. The paper sheet of claim 46 wherein the pendant group on Q1 capable of forming covalent bonds is —CONHCHOHCHO.
- 58. The paper sheet of claim 46 wherein Q1 has —CONH2 and —CONHCHOHCHO pendant groups.
- 59. A method of making a paper sheet comprising the steps of: (a) forming an aqueous suspension of papermaking fibers; (b) depositing the aqueous suspension of papermaking fibers onto a forming fabric to form a web; and (c) dewatering and drying the web to form a paper sheet, wherein a synthetic polymer is added to the aqueous suspension of fibers and/or the web, said polymer having the following structure: where:a,b>0; c≧0; d>0; w≧1; Q1 is selected from the group consisting of —CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO and mixtures thereof, wherein M+ is a counter ion; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 60. The method of claim 59 wherein Q2 is of the form —Z1—Q2—Z1′ where Z1, Z1′ are bridging radicals, which can be the same or different.
- 61. The method of claim 59 wherein Q4 is of the form —Z2—Q4—Z2— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 62. The method of claim 59 wherein Q4 is a radical of the form —CHR1CR30R1′— wherein R30 is an aliphatic polyether derivative of the formula —[(CR2R2′)xO]y—R3 where:R1,R1′ is —H, C1-4 alkyl; R2,R2′ is —H or —CH3; x≧2; y≧2; and R3 is a terminal group selected from the group consisting of —CH3, —H, —C2H5, and —NH2.
- 63. The method of claim 59 wherein Q3 is
- 64. The method of claim 59 wherein Q3 is a radical of the form —CHR1CR20R1′— whereinR20=pendant group of the form Z1—R10—W, where Z1 is a bridging radical capable of bonding the R10 group to the polymer; R1,R1′=H or a C1-4 alkyl group; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13 where R11,R12,R13 is a C1-4 allyl group.
- 65. The method of claim 64 wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 66. The method of claim 64 wherein R10 is —(CH2CH2)— or —C(CH3)2CH2CH2—.
- 67. The method of claim 59 wherein “c” is 0.
- 68. The method of claim 59 wherein “d” is 0.
- 69. The method of claim 59 wherein the pendant group on Q1 capable of forming hydrogen bonds is —CONH2.
- 70. The method of claim 59 wherein the pendant group on Q1 capable of forming covalent bonds is —CONHCHOHCHO.
- 71. The method of claim 59 wherein Q1 has —CONH2 and —CONHCHOHCHO pendant groups.
- 72. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:a,b>0; c,d≧0; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose and is selected from the group consisting of —CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO and mixtures thereof, wherein M+ is a counter ion; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 73. The paper sheet of claim 72 wherein the pendant group on Q1 capable of forming hydrogen bonds is —CONH2.
- 74. The paper sheet of claim 72 wherein the pendant group on Q1 capable of forming covalent bonds is —CONHCHOHCHO.
- 75. The paper sheet of claim 72 wherein Q1 has —CONH2 and —CONHCHOHCHO pendant groups.
- 76. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:a,b>0; c,d≧0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking, and is of the form —Z2—Q4—Z2′— where Z2, Z2′ are bridging radicals, which can be the same or different.
- 77. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: wherea,b>0; c,d≧0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking, and is a radical of the form —CHR1CR30R1′— wherein R30 is an aliphatic polyether derivative of the formula —[(CR2R2 ′)xO]y—R3 where:R1,R1′ is —H, C1-4 alkyl; R2,R2′ is —H or —CH3; x≧2; y≧2; and R3 is a terminal group selected from the group consisting of —CH3, —H, —C2H5, and —NH2.
- 78. A paper sheet comprising a synthetic polymer having a moiety capable of forming covalent or hydrogen bonds with cellulose and containing one or more amphiphilic hydrocarbon moieties, said polymer having the following structure: where:a,b>0; c,d≧0; w≧1; Q1 =a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality and is a radical of the form —CHR1CR0R1′— wherein: R0=a pendant group of the form Z1—R10—W where Z1 is a radical capable of bonding the R10 group to the polymer; R1,R1′=H or a C1-4 alkyl group; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13 where R11,R12,R13 is a C1-4 alkyl group; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 79. The paper sheet of claim wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 80. The paper sheet of claim 78 wherein R10 is —(CH2CH2)—or —C(CH3)2CH2CH2—.
- 81. A method of making a paper sheet comprising the steps of: (a) forming an aqueous suspension of papermaking fibers; (b) depositing the aqueous suspension of papermaking fibers onto a forming fabric to form a web; and (c) dewatering and drying the web to form a paper sheet, wherein a synthetic polymer is added to the aqueous suspension of fibers and/or the web, said polymer having the following structure: where:a,b>0; c,d ≧0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose and is selected from the group consisting of —CONH2, —COOH, —COO−M+, —OH, —CONHCHOHCHO and mixtures thereof, wherein M+ is a counter ion; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 82. The method of claim 81 wherein the pendant group on Q1 capable of forming hydrogen bonds is —CONH2.
- 83. The method of claim 81 wherein the pendant group on Q1 capable of forming covalent bonds is —CONHCHOHCHO.
- 84. The method of claim 81 wherein Q1 has —CONH2 and —CONHCHOHCHO pendant groups.
- 85. A method of making a paper sheet comprising the steps of: (a) forming an aqueous suspension of papermaking fibers; (b) depositing the aqueous suspension of papermaking fibers onto a forming fabric to form a web; and (c) dewatering and drying the web to form a paper sheet, wherein a synthetic polymer is added to the aqueous suspension of fibers and/or the web, said polymer having the following structure: where:a,b>0; c,d≧0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking, and Q4 is a radical of the form —CHR1CR0R1′— wherein R0 is an aliphatic polyether derivative of the formula —[(CR2R2′)xO]y—R3 where:R1,R1′ is —H, C1-4 alkyl; R2,R2′ is —H or —CH3; x≧2; y≧2; and R3 is a terminal group selected from the group consisting of —CH3, —H, —C2H5, and —NH2.
- 86. A method of making a paper sheet comprising the steps of: (a) forming an aqueous suspension of papermaking fibers; (b) depositing the aqueous suspension of papermaking fibers onto a forming fabric to form a web; and (c) dewatering and drying the web to form a paper sheet, wherein a synthetic polymer is added to the aqueous suspension of fibers and/or the web, said polymer having the following structure: where:a,b>0; c,d≧0; w≧1; Q1=a monomer unit or a block or graft copolymer containing a pendant group capable of forming hydrogen or covalent bonds with cellulose; Q2=an ethylenically unsaturated vinyl monomer unit or a block or graft copolymer containing the amphiphilic hydrocarbon moiety; Q3=a monomer unit or a block or graft copolymer containing a charge functionality and Q3 is a radical of the form —CHR1CR0R1′— wherein R0=pendant group of the form Z1—R10—W, where Z1 is a radical capable of bonding the R10 group to the polymer; R1,R1′=H or a C1-4 alkyl group; R10=any linear or branched, aliphatic or aromatic hydrocarbon of 2 or more carbons; and W=—N+R11,R12,R13 where R11,R12,R13 is a C1-4 alkyl group; and Q4=a monomer unit or a block or graft copolymer containing a hydrophilic moiety, which is desirable for making the material into a form suitable for papermaking.
- 87. The method of claim 86 wherein Z1 is selected from the group consisting of aryl, —CH2—, —COO—, —CONH—, —O—, —S—, and —OSO2O—.
- 88. The method of claim 86 wherein R10 is —(CH2CH2)— or —C(CH3)2CH2CH2—.
Parent Case Info
Provisional Application No. 60/117,166 filed Jan. 25, 1999.
US Referenced Citations (17)
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO 9845530 A1 |
Oct 1998 |
WO |
Provisional Applications (1)
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Number |
Date |
Country |
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60/117166 |
Jan 1999 |
US |