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Rational synthesis of a hierarchical Mo2C/C nanosheet composite with enhanced lithium storage properties.


ABSTRACT: Transition metal carbides have been studied extensively as anode materials for lithium-ion batteries (LIBs), but they suffer from sluggish lithium reaction kinetics and large volume expansion. Herein, a hierarchical Mo2C/C nanosheet composite has been synthesized through a rational pyrolysis strategy, and evaluated as an anode material with enhanced lithium storage properties for LIBs. In the hierarchical Mo2C/C nanosheet composite, large numbers of Mo2C nanosheets with a thickness of 40-100 nm are uniformly anchored onto/into carbon nanosheet matrices. This unique hierarchical architecture can provide favorable ion and electron transport pathways and alleviate the volume change of Mo2C during cycling. As a consequence, the hierarchical Mo2C/C nanosheet composite exhibits high-performance lithium storage with a reversible capacity of up to 868.6 mA h g-1 after 300 cycles at a current density of 0.2 A g-1, as well as a high rate capacity of 541.8 mA h g-1 even at 5.0 A g-1. More importantly, this hierarchical composite demonstrates impressive cyclability with a capacity retention efficiency of 122.1% over 5000 successive cycles at 5.0 A g-1, which surpasses the cycling properties of most other Mo2C-based materials reported to date.

SUBMITTER: Yue X 

PROVIDER: S-EPMC9036952 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Rational synthesis of a hierarchical Mo<sub>2</sub>C/C nanosheet composite with enhanced lithium storage properties.

Yue Xin X   Cao Minglei M   Wu Limeng L   Chen Wei W   Li Xingxing X   Ma Yanan Y   Zhang Chuankun C  

RSC advances 20210722 41


Transition metal carbides have been studied extensively as anode materials for lithium-ion batteries (LIBs), but they suffer from sluggish lithium reaction kinetics and large volume expansion. Herein, a hierarchical Mo<sub>2</sub>C/C nanosheet composite has been synthesized through a rational pyrolysis strategy, and evaluated as an anode material with enhanced lithium storage properties for LIBs. In the hierarchical Mo<sub>2</sub>C/C nanosheet composite, large numbers of Mo<sub>2</sub>C nanoshee  ...[more]

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