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过渡金属硒化物超级电容器高性能电极材料的研究进展 被引量:1
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作者 王帅达 刘秀军 张静 《功能材料》 CAS CSCD 北大核心 2022年第12期12047-12052,共6页
过渡金属硒化物具有较高的电导率,并且硒具有低电负性使较弱的金属-硒键更有利于氧化还原反应的发生,是潜在的超级电容器高性能电极材料。本文首先介绍了目前过渡金属硒化物主要的制备方法,然后阐述了提升其电化学性能的优化策略。一方... 过渡金属硒化物具有较高的电导率,并且硒具有低电负性使较弱的金属-硒键更有利于氧化还原反应的发生,是潜在的超级电容器高性能电极材料。本文首先介绍了目前过渡金属硒化物主要的制备方法,然后阐述了提升其电化学性能的优化策略。一方面对制备方法进行优化,通过调控反应物时间、反应温度、电解液组成等因素,调控电极材料的形貌和结构,来提高离子传输效率;另一方面通过(1)二元过渡金属成分的调配,(2)与碳基材料进行复合,以及(3)结构的调控制备高性能电极材料,以提高其电化学性能。最后对其发展前景和重点发展方向进行了展望。 展开更多
关键词 过渡金属硒化物 高性能电极材料 制备方法 结构调控
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Superstructured α-Fe2O3 nanorods as novel binder-free anodes for high-performing fiber-shaped Ni/Fe battery 被引量:4
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作者 Chenglong Liu Qiulong Li +5 位作者 Jingwen Cao Qichong Zhang Ping Mana Zhenyu Zhou Chaowei Li Yagang Yao 《Science Bulletin》 SCIE EI CAS CSCD 2020年第10期812-819,M0003,M0004,共10页
Fiber-shaped energy storage devices are indispensable parts of wearable and portable electronics.Aqueous rechargeable Ni/Fe battery is a very appropriate energy storage device due to their good safety without organic ... Fiber-shaped energy storage devices are indispensable parts of wearable and portable electronics.Aqueous rechargeable Ni/Fe battery is a very appropriate energy storage device due to their good safety without organic electrolytes, high ionic conductivity, and low cost. Unfortunately, the low energy density,poor power density and cycling performance hinder its further practical applications. In this study, in order to obtain high performance negative iron-based material, we first synthesized a-iron oxide(α-Fe2O3) nanorods(NRs) with superstructures on the surface of highly conductive carbon nanotube fibers(CNTFs), then electrically conductive polypyrrole(PPy) was coated to enhance the electron, ion diffusion and cycle stability. The as-prepared α-Fe2O3@PPy NRs/CNTF electrode shows a high specific capacity of 0.62 Ah cm-3 at the current density of 1 A cm-3. Furthermore, the Ni/Fe battery that was assembled by the above negative electrode shows a maximum volumetric energy density of 15.47 mWh cm-3 with228.2 mW cm-3 at a current density of 1 A cm-3. The cycling durability and mechanical flexibility of the Ni/Fe battery were tested, which show good prospect for practical application. In summary, these merits make it possible for our Ni/Fe battery to have practical applications in next generation flexible energy storage devices. 展开更多
关键词 a-Fe2O3 nanorods SUPERSTRUCTURES PPy coating Ni/Fe battery Wearable electronics
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