Hierarchical carbon nanosheet confined defective MoS x cathode towards long-cycling zinc-ion-battery

NANO RESEARCH(2023)

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摘要
Aqueous zinc-ion batteries (ZIBs) have attracted increasing attention due to their low cost and high safety. MoS 2 is a promising cathode material for aqueous ZIBs due to its favorable Zn 2+ accommodation ability. However, the structural strain and large volume changes during intercalation/deintercalation lead to exfoliation of active materials from substrate and cause irreversible capacity fading. In this work, a highly stable cathode was developed by designing a hierarchical carbon nanosheet-confined defective MoS x material (CNS@MoS x ). This cathode material exhibits an excellent cycling stability with high capacity retention of 88.3% and ∼ 100% Coulombic efficiency after 400 cycles at 1.2 A·g −1 , much superior compared to bare MoS 2 . Density functional theory (DFT) calculations combined with experiments illustrate that the promising electrochemical properties of CNS@MoS x are due to the unique porous conductive structure of CNS with abundant active sites to anchor MoS x via strong chemical bonding, enabling MoS x to be firmly confined on the substrate. Moreover, this unique hierarchical complex structure ensures the fast migration of Zn 2+ within MoS x interlayer.
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关键词
aqueous zinc-ion batteries,MoSx cathode,porous carbon nanosheets,long-cycling,hierarchical structure
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