Du Jiakai, Li Qingmeng, Chai Jiali, Jiang Lei, Zhang Qianqian, Han Ning, Zhang Wei, Tang Bohejin
College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai 201620, PR China.
Department of Materials Engineering, KU Leuven, Leuven, 3001, Belgium.
Dalton Trans. 2022 Jun 27;51(25):9584-9590. doi: 10.1039/d2dt01415g.
Lithium-ion batteries with a stable circulation capacity, high energy density and good safety are widely used in automobiles, mobile phones, manufacturing and other fields. MOs due to their large theoretical capacity, simple processing and abundant reserves, and used as anode materials for LIBs, have attracted much attention. Three electrochemical mechanisms of MOs are reviewed in this paper. In addition, research progress of MOs and prospects for their further applications in LIBs are summarized.
具有稳定循环容量、高能量密度和良好安全性的锂离子电池广泛应用于汽车、手机、制造业等领域。金属氧化物(MOs)因其理论容量大、加工简单且储量丰富,被用作锂离子电池的负极材料,备受关注。本文综述了金属氧化物的三种电化学机制。此外,还总结了金属氧化物的研究进展及其在锂离子电池中进一步应用的前景。