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Porous bowl-shaped VS2 nanosheets/graphene composite for high-rate lithium-ion storage 被引量:13

Porous bowl-shaped VS2 nanosheets/graphene composite for high-rate lithium-ion storage
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摘要 Two-dimensional (2D) layered vanadium disulfide (VS2) is a promising anode material for lithium ion batteries (LIBs) due to the high theoretical capacity.However,it remains a challenge to synthesize monodispersed ultrathin VS2 nanosheets to realize the full potential.Herein,a novel solvothermal method has been developed to prepare the monodispersed bowl-shaped NH3-inserted VS2 nanosheets (VS2).The formation of such a unique structure is caused by the blocked growth of (001) or (002) crystal planes in combination with a ripening process driven by the thermodynamics.The annealing treatment in Ar/H2creates porous monodispersed VS2(H-VS2),which is subsequently integrated with graphene oxide to form porous monodispersed H-VS2/rGO composite coupled with a reduction process.As an anode material for LIBs,H-VS2/rGO delivers superior rate performance and longer cycle stability:a high average capacity of 868/525 mAh g^-1 at a current density of 1/10 A g^-1;a reversible capacity of 1177/889 mAh g^-1 after 150/500 cycles at 0.2/1 A g^-1.Such excellent electrochemical performance may be attributed to the increased active sites available for lithium storage,the alleviated volume variations and the shortened Li-ion diffusion induced from the porous structure with large specific surface area,as well as the protective effect from graphene nanosheets. Two-dimensional (2D) layered vanadium disulfide (VS2) is a promising anode material for lithium ion batteries (LIBs) due to the high theoretical capacity.However,it remains a challenge to synthesize monodispersed ultrathin VS2 nanosheets to realize the full potential.Herein,a novel solvothermal method has been developed to prepare the monodispersed bowl-shaped NH3-inserted VS2 nanosheets (VS2).The formation of such a unique structure is caused by the blocked growth of (001) or (002) crystal planes in combination with a ripening process driven by the thermodynamics.The annealing treatment in Ar/H2creates porous monodispersed VS2(H-VS2),which is subsequently integrated with graphene oxide to form porous monodispersed H-VS2/rGO composite coupled with a reduction process.As an anode material for LIBs,H-VS2/rGO delivers superior rate performance and longer cycle stability:a high average capacity of 868/525 mAh g-1 at a current density of 1/10 A g-1;a reversible capacity of 1177/889 mAh g-1 after 150/500 cycles at 0.2/1 A g-1.Such excellent electrochemical performance may be attributed to the increased active sites available for lithium storage,the alleviated volume variations and the shortened Li-ion diffusion induced from the porous structure with large specific surface area,as well as the protective effect from graphene nanosheets.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第4期24-32,共9页 能源化学(英文版)
基金 the Natural Science Foundation of Hunan Province(Grant no.2017JJ1008) the Key Research and Development Program of Hunan Province of China under Grant 2018GK2031。
关键词 Vanadium DISULFIDE GRAPHENE LITHIUM-ION batteries NANOSHEETS COMPOSITE Vanadium disulfide Graphene Lithium-ion batteries Nanosheets Composite
作者简介 Corresponding authors:Caiyun Wang,E-mail addresses:caiyun@uow.edu.au;Corresponding authors:Pengbin He,E-mail addresses:hepengbin@hnu.edu.cn;Corresponding author:Jianmin Ma,E-mail addresses:nanoelechem@hnu.edu.cn,School of Physics and Electronics,Hunan University,Changsha,410082 Hunan,China。
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