Invention Grant
- Patent Title: Bio-electrode composition, bio-electrode, and method for manufacturing bio-electrode
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Application No.: US16815315Application Date: 2020-03-11
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Publication No.: US11643492B2Publication Date: 2023-05-09
- Inventor: Jun Hatakeyama , Motoaki Iwabuchi
- Applicant: SHIN-ETSU CHEMICAL CO., LTD.
- Applicant Address: JP Tokyo
- Assignee: SHIN-ETSU CHEMICAL CO., LTD.
- Current Assignee: SHIN-ETSU CHEMICAL CO., LTD.
- Current Assignee Address: JP Tokyo
- Agency: Oliff PLC
- Priority: JP 2019071288 2019.04.03
- Main IPC: C08F230/08
- IPC: C08F230/08 ; B01J41/13 ; C08F220/18 ; C08F220/32 ; C08F220/28 ; C08F220/38 ; B01J41/02 ; B01J41/14 ; C08F220/40 ; C08L33/08 ; C08L83/04 ; A61B5/24 ; A61B5/05 ; A61B5/25 ; C08F212/14 ; C08G77/00 ; A61B5/0531

Abstract:
A bio-electrode composition includes (A) an ionic material and (B) a lithium titanate powder. The component (A) is a polymer compound containing a repeating unit-a having a structure selected from an ammonium salt, a sodium salt, a potassium salt, and a silver salt of any of fluorosulfonic acid, fluorosulfonimide, and N-carbonyl-fluorosulfonamide. Thus, the present invention provides a bio-electrode composition capable of forming a living body contact layer for a bio-electrode that is excellent in electric conductivity and biocompatibility, is light-weight, can be manufactured at low cost, and can control significant reduction in the electric conductivity even when the bio-electrode is wetted with water or dried; a bio-electrode including a living body contact layer formed of the bio-electrode composition; and a method for manufacturing the bio-electrode.
Public/Granted literature
- US20200317840A1 BIO-ELECTRODE COMPOSITION, BIO-ELECTRODE, AND METHOD FOR MANUFACTURING BIO-ELECTRODE Public/Granted day:2020-10-08
Information query
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