Invention Grant
- Patent Title: Conductive composition for electrodes, and electrode and battery using same
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Application No.: US16330657Application Date: 2017-07-03
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Publication No.: US11264616B2Publication Date: 2022-03-01
- Inventor: Tatsuya Nagai , Yoko Horikoshi , Hitoshi Kaneko , Hiroshi Yokota
- Applicant: DENKA COMPANY LIMITED
- Applicant Address: JP Tokyo
- Assignee: DENKA COMPANY LIMITED
- Current Assignee: DENKA COMPANY LIMITED
- Current Assignee Address: JP Tokyo
- Agency: Caesar Rivise, PC
- Priority: JPJP2016-174800 20160907
- International Application: PCT/JP2017/024408 WO 20170703
- International Announcement: WO2018/047454 WO 20180315
- Main IPC: C01B32/158
- IPC: C01B32/158 ; H01M4/62 ; H01M4/66 ; H01M4/136 ; H01M4/13 ; H01M4/505 ; H01M4/131 ; H01M4/58 ; H01M4/525 ; B82B1/00 ; H01M4/02

Abstract:
Provided is a conductive composition for electrodes, the conductive composition having excellent electrical conductivity and dispersibility. Also provided are: a positive electrode for non-aqueous batteries, the positive electrode using the conductive composition and having low electrode plate resistance and excellent binding properties; and a non-aqueous battery having high energy density, high output characteristics, and high cycle characteristics. The conductive composition for electrodes contains a conductive material, an active material, a binder, and a dispersant, wherein the conductive material contains carbon black and a multi-walled carbon nanotube having a powder resistivity of 0.035 Ω·cm or less as measured under a load of 9.8 MPa, and a median volumetric diameter D50 value, which is as a measure of dispersibility, in the range of 0.3-8 μm The positive electrode which is for non-aqueous batteries and has low electrode plate resistance and excellent binding properties; and the non-aqueous battery having high output characteristics and high cycle characteristics are obtained by using the conductive composition in which the content of the multi-walled carbon nanotube in the conductive material is 3-50 mass %.
Public/Granted literature
- US20190198879A1 CONDUCTIVE COMPOSITION FOR ELECTRODES, AND ELECTRODE AND BATTERY USING SAME Public/Granted day:2019-06-27
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