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Enhanced electrochemical performance of MoS2/graphene nanosheet nanocomposites.


ABSTRACT: Molybdenum disulfide (MoS2) is attractive as an anode material for next-generation batteries, because of its layered structure being favorable for the insertion/deinsertion of Li+ ions, and its fairly high theoretical capacity. However, since the MoS2 anode material has exhibited disadvantages, such as low electrical conductivity and poor cycling stability, to improve the electrochemical performance of MoS2 in this study, a nanocomposite structure consisting of MoS2 and GNS (MoS2/GNS) as an anode for LIBs was prepared, by controlling the weight ratios of MoS2/GNS. The X-ray diffraction patterns and electron microscopic analysis showed that the nanocomposite electrode structure consisted of well-formed MoS2 nanoparticles and GNS. Compared to MoS2-only, the MoS2/GNS composites exhibited high retention and improved capacity at high current densities. In particular, among these nanocomposite samples, MoS2/GNS(8 : 2) with an appropriate portion of GNS exhibited the best LIB performance, due to the lowest interfacial resistance and highest Li-ion diffusivity.

SUBMITTER: Choi JH 

PROVIDER: S-EPMC9053862 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Enhanced electrochemical performance of MoS<sub>2</sub>/graphene nanosheet nanocomposites.

Choi Jin-Hyeok JH   Kim Min-Cheol MC   Moon Sang-Hyun SH   Kim Hyeona H   Kim Yo-Seob YS   Park Kyung-Won KW  

RSC advances 20200519 32


Molybdenum disulfide (MoS<sub>2</sub>) is attractive as an anode material for next-generation batteries, because of its layered structure being favorable for the insertion/deinsertion of Li<sup>+</sup> ions, and its fairly high theoretical capacity. However, since the MoS<sub>2</sub> anode material has exhibited disadvantages, such as low electrical conductivity and poor cycling stability, to improve the electrochemical performance of MoS<sub>2</sub> in this study, a nanocomposite structure cons  ...[more]

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