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通过还原氧化石墨烯包裹的双金属硫化物纳米笼的界面工程提高锂/钠快速存储性能

Enhancing Rapid Li/Na Storage Performance via Interface Engineering of Reduced Graphene Oxide-Wrapped Bimetallic Sulfide Nanocages.

作者信息

Ren Yu-Jie, Guan Hao-Bo, Hou Yun-Lei, Zhang Bo-Han, Tian Kuan-Kuan, Xiong Bai-Qin, Chen Jing-Zhou, Zhao Dong-Lin

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

Key Laboratory of Carbon Fiber and Functional Polymers (Beijing University of Chemical Technology), Ministry of Education, Beijing 100029, China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45619-45631. doi: 10.1021/acsami.4c06039. Epub 2024 Aug 20.

Abstract

Transition-metal sulfide is considered to be an admirable transformational electrode material due to low cost, large specific capacity, and good reversibility in lithium-ion batteries (LIBs) and sodium-ion batteries (SIBs). Herein, the reduced graphene oxide-wrapped open bimetallic sulfide (NiS-CoS@rGO) nanocage, derived from nickel-cobalt Prussian blue, was obtained by two-step calcination. There are luxuriant pore structures in the nanocage composite with a specific surface area of 85.28 m g, which provides plentiful paths for rapid transmission of Li/Na and alleviates the volume stress caused by insertion and extraction of alkali metal ions. The excellent interface combination of bimetallic sulfide wrapped in reduced graphene oxide improves the conductivity and overall performance of the battery. Thanks to the special interface engineering, the open NiS-CoS@rGO nanocage composite displays rapid lithium storage properties with an average diffusion coefficient of 8.5 × 10 cm s. Moreover, after 300 cycles, the reversible capacity of the composite is 1113.2 mAh g at 1 A g. In SIBs, the capacity of the open NiS-CoS@rGO composite is 487.9 mAh g when the current density is 5 A g. These preeminent performances demonstrate the enormous development prospects of bimetallic sulfide nanocage as anode material in LIBs and SIBs.

摘要

过渡金属硫化物因其低成本、高比容量以及在锂离子电池(LIBs)和钠离子电池(SIBs)中的良好可逆性,被认为是一种令人钦佩的转换型电极材料。在此,通过两步煅烧获得了源自镍钴普鲁士蓝的还原氧化石墨烯包裹的开放双金属硫化物(NiS-CoS@rGO)纳米笼。纳米笼复合材料中存在丰富的孔隙结构,比表面积为85.28 m²/g,为Li/Na的快速传输提供了充足的路径,并减轻了碱金属离子嵌入和脱出所引起的体积应力。包裹在还原氧化石墨烯中的双金属硫化物具有优异的界面结合,提高了电池的导电性和整体性能。得益于特殊的界面工程,开放的NiS-CoS@rGO纳米笼复合材料显示出快速的锂存储性能,平均扩散系数为8.5×10⁻¹² cm²/s。此外,在300次循环后,该复合材料在1 A/g时的可逆容量为1113.2 mAh/g。在SIBs中,当电流密度为5 A/g时,开放的NiS-CoS@rGO复合材料的容量为487.9 mAh/g。这些卓越的性能表明双金属硫化物纳米笼作为LIBs和SIBs阳极材料具有巨大的发展前景。

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