Improving the electrochemical performance of lithium‐ion battery using silica/carbon anode through prelithiation techniques

Author:

Nguyen Thi Xuan My12,Le Kha Minh123,Phung Quan23,Truong Duc Quang4,Nguyen Hoang Van123,Nguyen Quynh Nhu12,Huynh Tuyen Thi Kim12,Pham Liem Thanh12,Van Man Tran123,Le Phung My Loan123ORCID

Affiliation:

1. Applied Physical Chemistry Laboratory VNUHCM‐University of Science Ho Chi Minh Vietnam

2. Vietnam National University Ho Chi Minh City (VNUHCM) Ho Chi Minh Vietnam

3. Department of Physical Chemistry, Faculty of Chemistry VNUHCM‐University of Science Ho Chi Minh Vietnam

4. Battery Cell Institute, VinFast LLC, Cat Ba Hai Phong Vietnam

Abstract

AbstractThis work focuses on the two most common techniques, including the direct contact method (CM) and the electrochemical method (EM) in the half‐cell applied for the SiO2/C anode. After the prelithiation process, the anodes would be assembled in the coin cells paired with NMC622 cathode. According to electrochemical performance, prelithiation techniques could strengthen the initial discharged capacity and Coulombic efficiency. While the nonprelithiated sample exhibits a poor discharged capacity of 48.43 mAh·g1 and low Coulombic efficiency of 87.41% in the first cycle, the CM and EM methods illustrated a better battery performance. Specifically, the EM4C exhibited a higher initial discharged capacity and Coulombic efficiency (137.06 mAh·g1 and 95.82%, respectively) compared to the CM30 (99.08 mAh·g1 and 93.23%, respectively). As a result, this research hopes to bring some remarkable information to improve full‐cell properties using SiO2/C as an anode material by the prelithiation method.

Funder

University of Science Ho Chi Minh City

Publisher

Wiley

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