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首页> 外文期刊>Chemical engineering journal >In situ confined conductive nickel cobalt sulfoselenide with tailored composition in graphitic carbon hollow structure for energy storage
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In situ confined conductive nickel cobalt sulfoselenide with tailored composition in graphitic carbon hollow structure for energy storage

机译:原位局限于狭窄的导电镍钴磺糖烯酮,具有用于储能的石墨碳中空结构中的量身定制组合物

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摘要

Synthesis of nanostructured composites containing multiple components with distinctive structure and composition is important for high-performance energy storage but challenging. Starting form metal-organic frameworks (MOF5), we herein successfully synthesize a series of advanced nanocomposites consisting of composition-tailored nickel cobalt sulfoselenide (NiCo2(SxSe1-x)(5)) nanoparticles confined in graphitic carbon hollow spheres (GC HSs). For pseudocapacitors, the NiCo2(S0.78Se0.22)(5)/GC HSs exhibit the highest specific capacity (560.7 Cg(-1) at 1 A g(-1)) with good rate capability and cycling performance. An asymmetric supercapacitor (ASC) based on the NiCo2(S0.78Se0.22)(5)/GC HSs cathode and Bi2O2.33/rGO nanocomposite anode displays an energy density of 47.2 Wh kg at a high power density of 801 W kg(-1). Besides, the NiCo2(S0.78Se0.22)(5)/GC HSs are also promising anode materials for lithium-ion batteries, which deliver a high reversible capacity of 865.2 mA h g(-1) at 200 mA g(-1) after 100 cycles. The excellent performance could be attributed to the high electrical conductivity, facile electron and ion transport, good structural robustness and components' synergistic effect. We believe this synthetic strategy could be extended to prepare other anions doped bimetallic compounds and carbon composites for next-generation energy storage.
机译:含有具有独特结构和组成的多种组分的纳米结构复合材料对于高性能储能而且挑战是重要的。开始形成金属 - 有机框架(MOF5),我们在本文中成功地合成了一系列先进的纳米复合材料,该纳米复合材料组成,该系列由组成定制的镍钴磺糖苷(NicO 2(SxSe1-x)(5))纳米颗粒限制在石墨碳中空球体(GC HSS)中。对于假偶联器,NicO2(S0.78Se0.22)(5)/ GC HSS具有良好的速率能力和循环性能的最高特异性容量(560.7cg(-1)),具有良好的速率和循环性能。基于NicO2(S0.78Se0.22)(5)/ GC HSS阴极和Bi2O2.33 / Rgo纳米复合阳极的不对称超级电容器(ASC)显示器为47.2WH kg的高功率密度为801W kg( -1)。此外,NicO2(S0.78Se0.22)(5)/ GC HSS也是锂离子电池的阳极材料,其在200mA g(-1)时提供865.2 mA Hg(-1)的高可逆容量。 100次循环后。优异的性能可能归因于高导电性,容易电子和离子传输,结构稳健性和组件的协同效应。我们认为可以扩展这种合成策略以制备其他阴离子掺杂双金属化合物和碳复合材料,用于下一代能量储存。

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