IP Library Granted Patent US 11,749,218
Granted Patent B2
US 11,749,218 · App. 17/023,687 · Granted Sep 5, 2023

Method of forming an electro-optic medium

Inventors: Peter Carsten Bailey Widger (Nashua, NH); Jay William Anseth (Canton, MA); Richard J. Paolini, Jr. (Framingham, MA); Mark Benjamin Romanowsky (Cambridge, MA); Jillian Smith (Dorchester, MA); Stephen J. Telfer (Arlington, MA); Craig Alan Breen (Arlington, MA); Stephen Bull (Windham, NH)
Assignee: E Ink Corporation
G09G3/344C09B67/0013G02F1/167G02F1/1675G02F1/1676G02F1/1677G02F1/16757B82Y30/00G02F2001/1678G02F2202/022G02F2202/28G09G2320/0233
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Quick Facts
Patent No.
US 11,749,218
App. No.
17/023,687
Granted
Sep 5, 2023
Kind
B2
Abstract

A variable transmission film may include an electrophoretic medium having a plurality of capsules and a binder, each capsule containing a plurality of electrically charged particles and a fluid, the charged particles being movable by application of an electric field and being capable of being switched between an open state and a closed state. The film may include at least one of a binder containing fish gelatin and a polyanion; a binder containing one or more tinting agents; capsules containing charge control agents, such as an oligoamine-terminated polyolefin and a branched chain fatty acid comprising at least 8 carbon atoms; a selection of capsules in which at least 60% have a diameter between 50 μm and 90 μm and at least 15% have a diameter between 20 μm and 49 μm; a tinted adhesive layer; and a fluid selected from one or more nonconjugated olefinic hydrocarbons.

Claims (17)

1. A method of forming an electro-optic medium comprising:

providing an internal phase mixture of a non-polar solvent and charged pigment particles,

encapsulating portions of the internal phase mixture in a plurality of capsules,

sieving the plurality of capsules into at least two portions, a first portion comprising capsules having a size distribution between 50 μm and 90 μm in diameter, and a second portion comprising capsules having a size distribution between 20 μm and 49 μm in diameter, and

mixing a polymeric binder with two to five parts by weight of the first portion and one part by weight of the second portion.

2. The method of forming an electro-optic medium of claim 1 , wherein the polymeric binder is mixed with capsules at least 60% in a size range of between 50 μm and 90 μm in diameter and at least 15% in a size range of between 20 μm and 49 μm in diameter.

3. The method of forming an electro-optic medium of claim 1 , wherein the binder further comprises a tinting agent comprising one or more types of colored pigment particles selected from the group consisting of black, cyan, yellow, magenta particles, and combinations thereof.

4. The method of forming an electro-optic medium of claim 3 , wherein the black, cyan, and magenta particles have an average diameter within a range of 20 nm and 100 nm.

5. The method of forming an electro-optic medium of claim 3 , wherein the tinting agent comprises a mass ratio of black to cyan particles of 10:1 to 3:2, and a mass ratio of black to magenta particles of 10:1 to 3:2.

6. The method of forming an electro-optic medium of claim 3 , wherein the tinting agent comprises carbon black.

7. An electro-optic medium formed by the method of claim 1 .

8. An electro-optic medium comprising a plurality of capsules dispersed and fixed in a polymeric binder, each of said capsules encapsulating an internal phase mixture of a non-polar solvent and charged pigment particles, wherein the plurality of capsules comprise a first set of capsules having a size distribution between 50 μm and 90 μm in diameter and a second set of capsules having a size distribution between 20 μm and 49 μm in diameter, wherein the electro-optic medium contains two to five parts by weight of the first set of capsules for each part by weight of the second set of capsules.

9. The electro-optic medium of claim 8 , wherein at least 60% of the plurality of capsules comprise capsules of the first set of capsules, and wherein at least 15% of the plurality of capsules comprise capsules of the second set of capsules.

10. The electro-optic medium of claim 8 , wherein the polymeric binder further comprises a tinting agent comprising one or more types of colored pigment particles selected from the group consisting of black, cyan, yellow, magenta particles, and combinations thereof.

11. The electro-optic medium of claim 10 , wherein the black, cyan, and magenta particles have an average diameter within a range of 20 nm and 100 nm.

12. The electro-optic medium of claim 10 , wherein the tinting agent comprises a mass ratio of black to cyan particles of 10:1 to 3:2, and a mass ratio of black to magenta particles of 10:1 to 3:2.

13. The electro-optic medium of claim 10 , wherein the tinting agent comprises carbon black.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2023
From: WIDGER, PETER CARSTEN BAILEY; ANSETH, JAY WILLIAM; PAOLINI, RICHARD J., JR.; ROMANOWSKY, MARK BENJAMIN; SMITH, JILLIAN; TELFER, STEPHEN J.; BREEN, CRAIG ALAN; BULL, STEPHEN
To: E INK CORPORATION
Reel/Frame 065356/0087 →
Continuity (8)
Division 16008180 · Jun 14, 2018
Provisional Application 62673743 · May 18, 2018
Provisional Application 62563137 · Sep 26, 2017
Provisional Application 62520629 · Jun 16, 2017
Provisional Application 62520699 · Jun 16, 2017
Provisional Application 62520731 · Jun 16, 2017
Provisional Application 62520600 · Jun 16, 2017
Related Publication 20210002488A1 · Jan 7, 2021