纳米笼
材料科学
化学工程
阳极
硫化
沸石咪唑盐骨架
钴
钒
钠离子电池
比表面积
无机化学
化学
法拉第效率
纳米技术
金属有机骨架
电极
硫黄
吸附
冶金
有机化学
工程类
催化作用
物理化学
作者
Feng Xu,Shilan Li,Shengdong Jing,Xiaoli Peng,Long Yuan,Shengjun Lu,Yufei Zhang,Haosen Fan
标识
DOI:10.1016/j.jcis.2024.01.138
摘要
Development of high-performance metal sulfides anode materials is a great challenge for sodium-ion batteries (SIBs). In this work, a cobalt-based imidazolate framework (ZIF-67) were firstly synthesized and applied as precursor. After the successive surface etching, ion exchange and sulfidation processes, the final cobalt-vanadium sulfide yolk-shell nanocages were obtained (CoS2/VS4@NC) with VS4 shell and CoS2 yolk encapsulated into nitrogen doped carbon frameworks. This yolk-shell nanocage structure effectively increases the specific surface area and provides enough space for inhibiting the volume change during charge/discharge processes. Besides, the nitrogen doped carbon skeleton greatly improves the ionic conductivity and facilitates ion transport. When used as the anode materials for SIBs, the yolk-shell nanocages of CoS2/VS4@NC electrode exhibits excellent rate capability and stable cycle performance. Notably, it displays a long-term cycling stability with excellent capacity of 417.28 mA h g−1 after 700 cycles at a high current density of 5 A/g. This developed approach here provides a new route for the design and synthesis of various yolk-shell nanocages nanomaterials from enormous MOFs with multitudinous compositions and morphologies and can be extended to the application into other secondary batteries and energy storage fields.
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