IP Library Granted Patent US 12669760
Granted Patent B2
US 12669760 · App. 18/469,027 · Granted Jun 30, 2026

Silica particle, toner for developing electrostatic charge image, electrostatic charge image developer, toner cartridge, process cartridge, image forming apparatus, and image forming method

Inventors: Mai Mochida (Kanagawa, JP); Sakae Takeuchi (Kanagawa, JP); Yuka Zenitani (Kanagawa, JP); Hajime Sugahara (Kanagawa, JP); Mieko Seki (Kanagawa, JP); Kota Nohara (Kanagawa, JP)
Assignee: FUJIFILM Business Innovation Corp.
G03G9/09725C01P2006/14C01P2006/16
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12669760
App. No.
18/469,027
Filed
Sep 18, 2023
Granted
Jun 30, 2026
Kind
B2
Art Unit
1734
USPC
430/108.1
Abstract

A silica particle is provided in which a pore size distribution curve obtained by nitrogen gas adsorption of the silica particle after baking at 350° C. has at least one peak at a pore diameter of 2 nm or less and at least one peak at a pore diameter of more than 2 nm and 50 nm or less, and D/B is 0.50 or greater and 2.50 or less, where D and B are the volumes of pores having a diameter of 2 nm or less and a diameter of 2 nm or more and 25 nm or less, respectively, determined from the pore size distribution curve obtained by nitrogen gas adsorption of the silica particle after baking at 350° C.

Claims (55)

1 . A silica particle, wherein:

a pore size distribution curve obtained by nitrogen gas adsorption of the silica particle after baking at 350° C. has at least one peak at a pore diameter of 2 nm or less and at least one peak at a pore diameter of more than 2 nm and 50 nm or less; and

D/B is 0.50 or greater and 2.50 or less, where D and B are volumes of pores having a diameter of 2 nm or less and a diameter of 2 nm or more and 25 nm or less, respectively, determined from the pore size distribution curve obtained by nitrogen gas adsorption of the silica particle after baking at 350° C.

2 . The silica particle according to claim 1 , wherein:

the D/B is 0.55 or greater and 2.00 or less.

3 . The silica particle according to claim 1 , wherein:

the D is 0.10 cm 3 /g or more and 1.10 cm 3 /g or less.

4 . The silica particle according to claim 1 , comprising:

a nitrogen-containing compound.

5 . The silica particle according to claim 4 , wherein:

an amount of the nitrogen-containing compound is 0.02% by mass or more and 1.20% by mass or less as a nitrogen content of the silica particle.

6 . The silica particle according to claim 4 , wherein:

a ratio C/D is 0.05 or greater and 0.82 or less, where C is a volume of pores having a diameter of 2 nm or less determined from a pore size distribution curve obtained by nitrogen gas adsorption of the silica particle before baking at 350° C.

7 . The silica particle according to claim 6 , wherein:

the C/D is 0.05 or greater and 0.70 or less.

8 . The silica particle according to claim 4 , wherein:

a ratio A/B is 0 or greater and 0.92 or less, where A is a volume of pores having a diameter of 2 nm or more and 25 nm or less determined from a pore size distribution curve obtained by nitrogen gas adsorption of the silica particle before baking at 350° C.

9 . The silica particle according to claim 4 , wherein:

a number-average diameter of the silica particles is 40 nm or more and 200 nm or less.

10 . The silica particle according to claim 4 , wherein:

the nitrogen-containing compound is at least one selected from the group consisting of quaternary ammonium salts, primary amine compounds, secondary amine compounds, tertiary amine compounds, amide compounds, imine compounds, and nitrile compounds.

11 . A toner for developing an electrostatic charge image, the toner comprising:

a toner particle; and

the silica particle according to claim 4 as an external additive attached to the toner particle.

12 . A toner for developing an electrostatic charge image, the toner comprising:

a toner particle; and

the silica particle according to claim 5 as an external additive attached to the toner particle.

13 . A toner for developing an electrostatic charge image, the toner comprising:

a toner particle; and

the silica particle according to claim 6 as an external additive attached to the toner particle.

14 . A toner for developing an electrostatic charge image, the toner comprising:

a toner particle; and

the silica particle according to claim 7 as an external additive attached to the toner particle.

15 . A toner for developing an electrostatic charge image, the toner comprising:

a toner particle; and

the silica particle according to claim 8 as an external additive attached to the toner particle.

16 . An electrostatic charge image developer comprising:

the toner according to claim 11 for developing an electrostatic charge image.

17 . A toner cartridge attachable to and detachable from an image forming apparatus, the toner cartridge comprising:

the toner according to claim 11 for developing an electrostatic charge image.

18 . A process cartridge attachable to and detachable from an image forming apparatus, the process cartridge comprising:

a developing component that contains the electrostatic charge image developer according to claim 16 and develops, using the electrostatic charge image developer, an electrostatic charge image on a surface of an image carrier to form a toner image.

19 . An image forming apparatus comprising:

an image carrier;

a charging component that charges a surface of the image carrier;

an electrostatic charge image creating component that creates an electrostatic charge image on the charged surface of the image carrier;

a developing component that contains the electrostatic charge image developer according to claim 16 and develops, using the electrostatic charge image developer, the electrostatic charge image on the surface of the image carrier to form a toner image;

a transfer component that transfers the toner image on the surface of the image carrier to a surface of a recording medium; and

a fixing component that fixes the toner image on the surface of the recording medium.

20 . An image forming method comprising:

charging a surface of an image carrier;

creating an electrostatic charge image on the charged surface of the image carrier;

developing, using the electrostatic charge image developer according to claim 16 , the electrostatic charge image on the surface of the image carrier to form a toner image;

transferring the toner image on the surface of the image carrier to a surface of a recording medium; and

fixing the toner image on the surface of the recording medium.