Claims
- 1. A toner for developing electrostatic images, comprising as a main component thereof a binder resin having a copolymer comprising a combination of a high Tg monomer having a structure represented by the following structural formula (1) and a glass transition temperature of 50° C. or higher, a low Tg monomer having a structure represented by the following structural formula (2) and a glass transition temperature of lower than 50° C., and a hydrophilic monomer having a structure represented by the following structural formula (3):
- 2. A toner according to claim 1, wherein the toner is prepared by a wet process.
- 3. A toner according to claim 2, wherein the wet process comprises an aggregating step of obtaining aggregated particles by aggregating particles containing a binder resin in a dispersion in which the particles are dispersed, and a step of fusing the aggregated particles by heating.
- 4. A toner according to claim 1, wherein at least one of the high Tg monomer and the low Tg monomer is a methacrylic acid ester or an acrylic acid ester.
- 5. A toner according to claim 1, wherein the hydrophilic group represented by R3′ contains any of a carboxyl group, a hydroxyl group, an amino group, a sulfonyl group, and an amido group.
- 6. A toner according to claim 1, wherein the binder resin contains a cyclic reactive group, and is cross-linked at a temperature higher than the highest temperature at the time of toner preparation.
- 7. A toner according to claim 6, wherein the cyclic reactive group is any of an epoxy group, an aziridinyl group and an oxazoline group.
- 8. A toner according to claim 1, further comprising a compound containing a carboxyl group.
- 9. A toner according to claim 1, wherein a shape factor SF1, of the toner, represented by the following equation (A) is 100 to 140:
- 10. A toner according to claim 1, wherein a surface property index value, of the toner, represented by the following equation (B) is 2.0 or smaller:
- 11. A toner according to claim 1, wherein an average particle diameter of toner particles is 3 to 9 μm.
- 12. A toner according to claim 1, wherein a volume average particle size distribution index GSDv of toner particles is 1.30 or smaller.
- 13. A toner according to claim 1, wherein an apparent weight average molecular weight of the toner is 15,000 to 55,000.
- 14. A toner according to claim 1, further comprising a releasing agent.
- 15. A toner according to claim 1, comprising colorant particles whose median diameter is 100 to 330 nm.
- 16. A two-component developer, comprising the toner according to claim 1 and a carrier.
- 17. A two-component developer according to claim 16, wherein an average diameter of carrier particles is 20 to 150 μm.
- 18. A process for preparing the toner of claim 1, comprising an aggregating step of obtaining aggregated particles by aggregating particles containing a binder resin in a dispersion in which the particles are dispersed, and a fusing step of fusing the aggregated particles by heating.
- 19. An image forming method, comprising the steps of: forming an electrostatic latent image on an electrostatic image holding member, developing the electrostatic latent image with a developer to form a toner image, transferring the toner image onto a transfer receiving material, and thermally fixing the toner image, wherein the developer contains the toner of claim 1.
- 20. An image forming method according to claim 19, wherein the developer further contains a carrier.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2003-79277 |
Mar 2003 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority under 35 USC 119 from Japanese Patent Application NO. 2003-79277, the disclosure of which is incorporated by reference herein.