4.5 Article

Sucrose-assisted rapid synthesis of multifunctional CrVO4nanoparticles: a new high-performance cathode material for lithium ion batteries

期刊

IONICS
卷 27, 期 1, 页码 39-48

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11581-020-03783-3

关键词

Rechargeable battery; Chromium vanadate; Positive electrode; High specific capacity

资金

  1. Science and Engineering Research Board, Government of India [ECR/2017/000743]

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This paper identifies and investigates the orthovanadate family CrVO(4) as a new cathode material for high-rate and high-capacity lithium ion batteries. A solution-based synthetic protocol is proposed to synthesize CrVO(4) nanoparticles, with physical characterizations showing enhanced conductivity and surface area. Experimental results demonstrate that the prepared CrVO(4) nanoparticles have enhanced lithium storage capabilities with high rate-capability and cyclability.
The search of new multifunctional cathode materials, with new crystal structures and compositions, for lithium ion battery is extremely important to mitigate the drawbacks associated with the current electrode materials used in rechargeable lithium ion batteries. In this paper, orthovanadate family CrVO(4)has been identified and investigated as a new cathode material for high-rate and high-capacity lithium ion battery for the first time. A solution-based effective and versatile synthetic protocol has been proposed to synthesize CrVO(4)nanoparticles. Physical characterizations reveal that the prepared CrVO(4)consists of uniform and discreet nanoparticles of crystallite size similar to 19 nm with widespread pore diameter, enhanced conductivity and surface area. The prepared CrVO(4)nanoparticles have been evaluated as a potential cathode material for lithium ion batteries, wherein the experimental results demonstrate enhanced lithium storage with high rate-capability and cyclability. The experimental results reveal that the proposed CrVO(4)is working through a partial conversion reaction mechanism.

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