Ti-Doped Co-Free Li1.2Mn0.6Ni0.2O2 Cathode Materials with Enhanced Electrochemical Performance for Lithium-Ion Batteries

Author:

Liu Sining12,Yan Xin123,Li Pengyu123,Tian Xinru123,Li Sinan123,Tao Yunwen4,Li Pengwei1ORCID,Luo Shaohua123

Affiliation:

1. School of Materials Science and Engineering, Northeastern University, Shenyang 110819, China

2. Key Laboratory of Dielectric and Electrolyte Functional Material Hebei Province, Qinhuangdao 066004, China

3. School of Resources and Materials, Northeastern University at Qinhuangdao, Qinhuangdao 066004, China

4. Independent Researcher, Arlington, TX 76010, USA

Abstract

Cobalt-free manganese-based lithium-rich layered oxides (LLOs) have garnered research attention as prospective lithium-ion cathode materials owing to their large specific capacity and low price. However, their large-scale application is hindered by their low Coulombic efficiency, poor cycling performance, voltage attenuation, and structural phase transition. To address these issues, the LLO structure is modified via Ti doping at the manganese site herein. Ti-doped Li1.2Mn0.6−xTixNi0.2O2 (x = 0, 0.03, 0.05, 0.10, and 0.15) is prepared using the high-temperature solid-state method. The Ti-doped Li1.2Mn0.6Ni0.2O2 is calculated via first principles. The results show that Ti4+ doping improves the cycle stability and rate performance of Li1.2Mn0.6Ni0.2O2. Electrochemical test results show that the sample exhibits enhanced electrochemical performance when the Ti doping amount is 0.05. The discharge specific capacity at 0.1C is 210.4 mAh·g−1, which reaches 191.1 mAh·g−1 after 100 cycles, with a capacity retention rate of 90.7%. This study proves the feasibility of using cheap cobalt-free LLOs as cathode materials for LIBs and provides a novel system for exploiting low-cost and high-performance cathode materials.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Natural Science Foundation-Steel, the Iron Foundation of Hebei Province

Fundamental Research Funds for the Central Universities

Key Laboratory of Dielectric and Electrolyte Functional Material Hebei Province

Publisher

MDPI AG

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