Claims
- 1. A toner composition comprised of binder, colorant, and a surface additive of a coated silica and wherein said silica possesses a BET surface area, in m2/g of from about 35 to about 65, a bulk density, in grams/liter, of from about 40 to about 60, and wherein the size diameter determined from the BET measurement is from about 20 to about 100 nanometers, and wherein said silica is coated with a mixture of y-aminopropyltriethoxysilane and hexamethyidisilazane, and wherein the silica coated additive is of a size diameter of from about 25 to about 75 nanometers; and wherein the aggregate of the coated silica size diameter is about 225 to about 400 nanometers.
- 2. A toner in accordance with claim 1 wherein the resin is a styrene acrylate, a styrene methacrylate, a polyester, or a styrene butylacrylate.
- 3. A toner in accordance with claim 1 wherein the coated silica is present in an amount of from about 0.05 to about 7 weight percent.
- 4. A toner in accordance with claim 1 wherein the coating on the silica is comprised of y-aminopropyltriethoxysilane present in an amount of from about 1 to about 5 parts per hundred based on the silica core and the hexamethyidisilazane is present in an amount of from about 65 to about 85 parts per hundred based on the silica core amount.
- 5. A toner in accordance with claim 1 wherein the coating on the silica is comprised of y-aminopropyltriethoxysilane in an amount of from about 2 to about 4 parts per hundred and the hexamethyldisilazane in an amount of from about 70 to about 80 parts per hundred.
- 6. A toner in accordance with claim 1 wherein the coated silica additive is of a size diameter of from about 30 to about 50 nanometers; and the coated aggregate additive size diameter is about 300 to about 375 nanometers.
- 7. A toner in accordance with claim 1 with a cohesivity of about 4 to about 40 percent, with a stable triboelectrical charge of from about 10 to about 35 microcoulombs per gram, a q/d of from about 0.2 to about 1.1 femtocoulombs per micron, and with an admix time of from less than about 30 seconds.
- 8. A toner in accordance with claim 1 further containing toner additives.
- 9. A toner in accordance with claim 8 wherein the additives are charge additives, waxes, metal salts, metal salts of fatty acids, metal oxides, or mixtures thereof.
- 10. A toner composition in accordance with claim 1 further containing a wax component with a molecular weight, Mw of from about 1,000 to about 20,000.
- 11. A toner composition in accordance with claim 10 wherein the wax component is selected from the group consisting of polyethylene and polypropylene.
- 12. A toner in accordance with claim 1 wherein the colorant is a pigment.
- 13. A developer comprised of the toner of claim 1 and carrier.
- 14. A developer in accordance with claim 13 wherein the carrier contains a polymer coating.
- 15. A developer in accordance with claim 13 wherein the carrier contains a mixture of polymer coatings.
- 16. A toner in accordance with claim 1 further including a wax and a coated titanium dioxide, and wherein the size diameter of said silica and said titanium dioxide are from about 35 to about 50 nanometers.
- 17. A toner in accordance with claim 16 wherein said silica and said titanium dioxide are each present in an amount of about 0.05 to about 7 weight percent.
- 18. A toner in accordance with claim 1 wherein the coating on the silica is comprised of y-aminopropyltriethoxysilane in an amount of about 3 parts per hundred based on the silica core and the hexamethyldisilazane is present in an amount of about 75 parts per hundred based on the silica core amount.
- 19. A toner in accordance with claim 1 with an admix time of from about 1 to about 29 seconds.
- 20. A toner in accordance with claim 1 wherein said colorant is a dye.
- 21. A negatively charged toner comprised of resin, colorant, optional wax and a surface additive mixture of a coated fumed silica, and metal oxide and wherein said silica possesses a BET surface area, in m2/g of about from about 35 to about 65, a bulk density, in grams/liter, of from about 40 to about 60, and wherein the size diameter determined by the BET measurement is from about 20 to about 100 nanometers, and wherein said metal oxide is titanium dioxide coated with a decylsilane and the silica contains a containing thereover comprised of a mixture of y-aminopropyltriethoxysilane and hexamethyldisilazane.
- 22. A toner in accordance with claim 3 wherein the colorant is a pigment.
- 23. A toner in accordance with claim 21 wherein said silica and said metal oxide are each present in an amount of about 2 to about 4 weight percent.
- 24. A toner in accordance with claim 21 wherein said toner further contains a wax component with a molecular weight, Mw of from about 1,000 to about 20,000.
- 25. A toner in accordance with claim 24 wherein said wax component is selected from the group consisting of polyethylene and polypropylene.
- 26. A toner composition consisting essentially of binder, colorant, and a surface additive of a coated silica, and wherein said silica possesses a BET surface area, in m2/g of from about 35 to about 65, a bulk density, in grams/liter, of from about 40 to about 60, and wherein the size diameter determined from the BET measurement is from about 20 to about 100 nanometers, and wherein said silica is coated with a mixture of y-aminopropyltriethoxysilane and hexamethyidisilazane, and wherein the silica coated additive is of a size diameter of from about 25 to about 75 nanometers, and wherein the aggregate coated silica size diameter is about 225 to about 400 nanometers.
COPENDING APPLICATIONS
Illustrated in copending applications, U.S. Ser. No. 09/132,188, now U.S. Pat. No. 6,004,714, and U.S. Ser. No. 09/132,623, the disclosures of each application being totally incorporated herein by reference are toners with coated silicas.
The appropriate components and processes of the above copending applications may be selected for the present invention in embodiments thereof.
US Referenced Citations (21)
Foreign Referenced Citations (2)
Number |
Date |
Country |
1442835 |
Jul 1976 |
GB |
2-308174 |
Dec 1990 |
JP |
Non-Patent Literature Citations (2)
Entry |
Derwent Acc No. 1991-067825.* |
Grant, Roger et al. Grant and Hackh's Chemical Dictionary, fifth edition. New York: McGraw-Hill, Inc. p. 532, 1987. |