IP Library Granted Patent US 12668664
Granted Patent B2
US 12668664 · App. 18/179,968 · Granted Jun 30, 2026

Sulfur copolymer and method for preparing the same

Inventors: Miyeon Lee (Wanju-gun, KR); Jaesang Yu (Wanju-gun, KR); Nam Ho You (Wanju-gun, KR)
Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
C08G75/14G02B1/041
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Quick Facts
Patent No.
US 12668664
App. No.
18/179,968
Filed
Mar 7, 2023
Granted
Jun 30, 2026
Kind
B2
Examiner
FANG, SHANE
Art Unit
1766
USPC
528/374
Abstract

Provided herein are a sulfur copolymer derived from an elemental sulfur and a thiol monomer and a method for preparing the same. The sulfur copolymer is synthesized by a simple method, and can be widely used in cameras and lenses, or defense materials-related industries, by replacing expensive inorganic materials used in existing infrared lenses. In addition, by adjusting the content of one or more sulfur monomers or two or more sulfur monomers, not only mid-wave infrared transmission but also long-wave infrared transmittance can be maintained at a high level.

Claims (20)

1 . A sulfur copolymer comprising a repeating unit comprising benzene and one or more sulfur monomers,

wherein the repeating unit is represented by Chemical Formula 2:

wherein n1 to n3 are integers from 0 to 100, and are the same as or different from each other.

2 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer is derived from an elemental sulfur and a thiol monomer, and the thiol monomer is, a trithiol monomer.

3 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer is derived from an elemental sulfur and a thiol monomer, and a content of the elemental sulfur is 50 to 80% by weight based on a total weight of the elemental sulfur and the thiol monomer.

4 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer is derived from an elemental sulfur and a thiol monomer, and a content of the thiol monomer is 20 to 50% by weight based on a total weight of the elemental sulfur and the thiol monomer.

5 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer is derived from an elemental sulfur and a thiol monomer, and a weight ratio of the elemental sulfur and the thiol monomer is 1:1 to 4:1.

6 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer is for an infrared lens.

7 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer is for transmitting a mid-wave infrared ray or a long-wave infrared ray.

8 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer has a maximum transmittance of 70% when applied to an infrared lens having a thickness of 1 mm or more.

9 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer has a mid-wave infrared transmittance of 50% or more when applied to an infrared lens having a thickness of 1 mm or more.

10 . The sulfur copolymer of claim 1 , wherein the sulfur copolymer has a long-wave infrared transmittance of 30% or more when applied to an infrared lens having a thickness of 1 mm or more.

11 . An infrared lens comprising the sulfur copolymer of claim 1 .

12 . A method for preparing a sulfur copolymer of claim 1 , comprising the steps of:

providing an elemental sulfur;

heating the elemental sulfur to prepare a polymeric sulfur; and

polymerizing the polymeric sulfur and a benzene monomer having one or more thiol groups to synthesize a sulfur copolymer,

wherein the benzene monomer having the one or more thiol groups is represented by the following Chemical Formula 3

13 . The method of claim 12 , wherein in the step of synthesizing the sulfur copolymer, a reverse vulcanization reaction is performed.

14 . The method of claim 12 , wherein the step of heating the elemental sulfur to prepare the polymeric sulfur is performed at a temperature of 170 to 190° C.