Invention Grant
- Patent Title: All-solid-state battery and manufacturing method thereof
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Application No.: US17424296Application Date: 2020-01-14
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Publication No.: US12142765B2Publication Date: 2024-11-12
- Inventor: Ryota Tajima , Yumiko Yoneda , Yohei Momma , Shunpei Yamazaki
- Applicant: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
- Applicant Address: JP Atsugi
- Assignee: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
- Current Assignee: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
- Current Assignee Address: JP Atsugi
- Agency: Fish & Richardson P.C.
- Priority: JP2019-010953 20190125
- International Application: PCT/IB2020/050243 WO 20200114
- International Announcement: WO2020/152540 WO 20200730
- Main IPC: H01M4/38
- IPC: H01M4/38 ; H01M4/02 ; H01M4/583 ; H01M4/62 ; H01M10/0525 ; H01M10/0562

Abstract:
Use of silicon as a negative electrode active material particle causes a problem of expansion and contraction of the negative electrode active material particle due to charging and discharging. A negative electrode active material particle or a plurality of negative electrode active material particles are bound or fixed using a graphene compound to inhibit expansion and contraction of the negative electrode active material particle due to charging and discharging. In an all-solid-state secondary battery, an interface between a solid electrolyte and a negative electrode or an interface between the solid electrolyte and a positive electrode has the highest resistance. In order to reduce the interface resistance, at least the negative electrode active material particle is surrounded by a graphene compound to increase the conductivity. Alternatively, a positive electrode active material particle is surrounded by a graphene compound to increase the conductivity. Carrier ions, e.g., lithium ions, pass through a graphene compound, and thus the graphene compound does not hinder the transfer of lithium ions between the positive electrode and the negative electrode in charging or discharging.
Public/Granted literature
- US20220115661A1 ALL-SOLID-STATE BATTERY AND MANUFACTURING METHOD THEREOF Public/Granted day:2022-04-14
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