One‐Step Sintering Synthesis Achieving Multiple Structure Modulations for High‐Voltage LiCoO2

Author:

Ren Hengyu1,Zhao Wenguang1,Yi Haocong1,Chen Zhefeng1,Ji Haocheng1,Jun Qi2,Ding Wangyang1,Li Zijian1,Shang Mingjie1,Fang Jianjun1,Li Ke1,Zhang Mingjian13,Li Shunning1,Zhao Qinghe1,Pan Feng1ORCID

Affiliation:

1. School of Advanced Materials Peking University Shenzhen Graduate School Shenzhen 518055 China

2. School of Materials Sun Yat‐Sen University Shenzhen 518107 China

3. School of Science and Engineering The Chinese University of Hong Kong Shenzhen 518172 China

Abstract

AbstractThe structure instability issues of the highly delithiated LiCoO2 have significantly hindered its high‐voltage applications (≥4.55 V vs Li/Li+). Herein, for the first time, multiple modifications of Li0.9Mg0.05CoO2 (L0.9M0.05CO) via a simple one‐step sintering synthesis are reported. A combination of the bulk Li/Co antisites, a Mg‐pillar enriched surface, and a thin MgO coating layer is achieved to maintain both the bulk and surface structural stability of L0.9M0.05CO upon cycling at an upper cut‐off voltage of 4.6 V. The bulk Li/Co antisites are discovered to enhance the H1‐3 phase evolution reversibility, the Mg pillars that substitute the Li sites effectively reinforces the surface structure, and the thin MgO coating layer can effectively prevent the cathode from severe side reactions. Benefiting from the reduced but reversible H1‐3 phase transition and the reinforced surface structure, L0.9M0.05CO shows an excellent cycle stability. This work provides a new structure modulation route for developing high‐voltage LiCoO2 cathodes.

Funder

National Natural Science Foundation of China

Soft Science Research Project of Guangdong Province

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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