纳米片
阳极
材料科学
硒化物
钠离子电池
纳米化学
电极
电化学
化学工程
电池(电)
纳米技术
热液循环
纳米结构
法拉第效率
纳米颗粒
电解质
制作
冶金
硒
化学
物理化学
功率(物理)
工程类
物理
量子力学
作者
Shan Zhang,Yuanfei Ai,Shu‐Chi Wu,Hsiang Ju Liao,Teng Su,Jyun Hong Chen,Chuan Hsun Wang,Ling Lee,Yu Ze Chen,Binbin Xu,Shin Yi Tang,Ding Wu,Shao Shin Lee,Jun Yin,Jing Li,Junyong Kang,Yu‐Lun Chueh
标识
DOI:10.1186/s11671-019-3035-6
摘要
In this work, three-dimensional (3D) CoMoSe4 nanosheet arrays on network fibers of a carbon cloth denoted as CoMoSe4@C converted directly from CoMoO4 nanosheet arrays prepared by a hydrothermal process followed by the plasma-assisted selenization at a low temperature of 450 °C as an anode for sodium-ion battery (SIB) were demonstrated for the first time. With the plasma-assisted treatment on the selenization process, oxygen (O) atoms can be replaced by selenium (Se) atoms without the degradation on morphology at a low selenization temperature of 450 °C. Owing to the high specific surface area from the well-defined 3D structure, high electron conductivity, and bi-metal electrochemical activity, the superior performance with a large sodium-ion storage of 475 mA h g−1 under 0.5–3 V potential range at 0.1 A g−1 was accomplished by using this CoMoSe4@C as the electrode. Additionally, the capacity retention was well maintained over 80 % from the second cycle, exhibiting a satisfied capacity of 301 mA h g−1 even after 50 cycles. The work delivered a new approach to prepare a binary transition metallic selenide and definitely enriches the possibilities for promising anode materials in SIBs with high performances.
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