- Patent Title: Conductive carbon mixture and method for manufacturing same, electrode using conductive carbon mixture and method for manufacturing same, and electricity storage device provided with electrode
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Application No.: US16630290Application Date: 2018-07-03
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Publication No.: US11600824B2Publication Date: 2023-03-07
- Inventor: Satoshi Kubota , Yasuyoshi Shiraishi , Noriyuki Miyamoto , Masaki Koike , Shuichi Ishimoto
- Applicant: NIPPON CHEMI-CON CORPORATION
- Applicant Address: JP Tokyo
- Assignee: NIPPON CHEMI-CON CORPORATION
- Current Assignee: NIPPON CHEMI-CON CORPORATION
- Current Assignee Address: JP Tokyo
- Agency: Birch, Stewart, Kolasch & Birch, LLP
- Priority: JPJP2017-136475 20170712
- International Application: PCT/JP2018/025128 WO 20180703
- International Announcement: WO2019/013034 WO 20190117
- Main IPC: H01M4/62
- IPC: H01M4/62 ; C09C1/54 ; C09C1/56 ; H01G11/32 ; H01G11/86 ; H01M4/04 ; H01B1/04 ; H01M4/02

Abstract:
Provided is a conductive carbon mixture which is to be used together with an electrode active material in manufacturing an electrode of an electricity storage device and enables the manufacture of the electricity storage device having a good cycle life. The conductive carbon mixture for manufacturing an electrode of an electricity storage device comprises an oxidized carbon having electrical conductivity and a different conductive carbon which is different from the oxidized carbon, wherein the oxidized carbon covers the surface of the different conductive carbon. The conductive carbon mixture is characterized in that the ratio of the peak intensity of the 2D band to the peak intensity of the D band in a Raman spectrum of the conductive carbon mixture is 55% or less relative to the ratio of the peak intensity of the 2D band to the peak intensity of the D band in a Raman spectrum of the different conductive carbon. This conductive carbon mixture covers the surface of the electrode active material in a particularly good manner and thus prolongs the cycle life of the electricity storage device.
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