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BATTERY, ELECTROLYTE SELECTION METHOD, AND ENERGY-STORAGE APPARATUS

InventionPending
3views
20Claims · 3 independent
§ Ⅰ

Dossier Overview

Inventor

Shize JIA; Tengxiao LV; Zhenhong KANG

IPC Classification

H1M 10/567G1R 31/385G1R 31/396H1M 4/131H1M 4/58H1M 4/62H1M 4/66H1M 10/44H1M 50/109H1M 50/216

CPC Classification

H1M10/567G1R31/385G1R31/396H1M4/131H1M4/5825H1M4/623H1M4/661H1M10/44H1M50/109H1M50/216

A battery, an electrolyte selection method, and an energy-storage apparatus are provided. The battery includes an electrode assembly and an electrolyte. The electrode assembly includes a positive electrode, a separator, and a negative electrode which are stacked sequentially. The electrolyte at least infiltrates part of the electrode assembly, and the electrolyte contains a lithium salt. The positive electrode is obtained by disassembling the battery in a fully charged state, the positive electrode obtained and the electrolyte are assembled in a button cell, the button cell is subjected to a linear sweep voltammetry (LSV) test at a potential sweep rate of 0.1 mV/s, and a first peak current density a1 of the button cell satisfies a relationship: 0.1 mAcm≤a1≤3 mAcm.

Original (Chinese)

A battery, an electrolyte selection method, and an energy-storage apparatus are provided. The battery includes an electrode assembly and an electrolyte. The electrode assembly includes a positive electrode, a separator, and a negative electrode which are stacked sequentially. The electrolyte at least infiltrates part of the electrode assembly, and the electrolyte contains a lithium salt. The positive electrode is obtained by disassembling the battery in a fully charged state, the positive electrode obtained and the electrolyte are assembled in a button cell, the button cell is subjected to a linear sweep voltammetry (LSV) test at a potential sweep rate of 0.1 mV/s, and a first peak current density a1 of the button cell satisfies a relationship: 0.1 mAcm≤a1≤3 mAcm.

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