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首页> 外文期刊>Electrochimica Acta >One-step controlled synthesis of hierarchical hollow Ni3S2/NiS@Ni3S4 core/shell submicrospheres for high-performance supercapacitors
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One-step controlled synthesis of hierarchical hollow Ni3S2/NiS@Ni3S4 core/shell submicrospheres for high-performance supercapacitors

机译:单步控制合成分层空心Ni3S2 / NI3S4核心/壳潜水层,高性能超级电容器

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Composition and microstructure are two main factors for enhancing the specific capacity, rate capability, and cycling life of electrode materials in electrochemical energy storage devices. Here, size-tunable hierarchical hollow core/shell submicrospheres based on nickel sulfide are for the first time rationally designed and synthesized through a one-step hydrothermal route, in which Ni3S2/NiS hollow submicrosphere works as a core and Ni3S4 nanoflakes as shells. The diameter of the hierarchical sphere can be controlled by cetyltrimethyl ammonium bromide. The formation mechanism of this unique structure is systematically investigated, which can be attributed to the combined action of cage effect, Kirkendall effects and Ostwald ripening mechanism. Due to the synergistic effects of various phase nickel sulfide, such hybrids exhibit superior electrochemical performance. When served as electrodes for supercapacitors, the hybrids show a high specific capacity of 1031.3 Cg(-1) at a current density of 2 Ag-1. Even as the current density increases to 40 A g(-1), the hierarchical core-shell nanosphere still reserves 614.4 C g(-1), exhibiting an excellent rate capacity and a good capacitance retention of 90.3% after 3000 cycles at 10 A g(-1). Furthermore, asymmetric supercapacitor based on the Ni3S2/NiS@Ni3S4 hybrid and reduced graphene oxide shows high power density, high energy density and long cycling lifespan. (C) 2018 Elsevier Ltd. All rights reserved.
机译:组成和微观结构是提高电化学能量存储装置中电极材料的特定容量,速率和循环寿命的两个主要因素。这里,基于硫化镍的尺寸可调层间中空芯/壳潜水层是通过一步水热途径合理设计和合成,其中Ni3S2 / NIS中空亚细胞作为核心和Ni3S4纳米薄片作为壳。可以通过十六烷基三溴化物控制层间球体的直径。系统地研究了这种独特结构的形成机制,可归因于笼效应,Kirkendall效应和Ostwald成熟机制的组合作用。由于各种相镍硫化物的协同效果,这种杂种具有卓越的电化学性能。当用作超级电容器的电极时,杂种在电流密度为2Ag-1的情况下显示出1031.3 cg(-1)的高比容量。即使在电流密度增加至40 A G(-1),分层的芯 - 壳纳米微球仍保留614.4 C g还(-1),表现出优异的速率容量和3000次循环后,以10A的90.3%的良好电容保持g(-1)。此外,基于Ni3S2 / NIS @ Ni3 S4杂种和还原的氧化石墨烯的非对称超级电容器显示出高功率密度,高能量密度和长循环寿命。 (c)2018年elestvier有限公司保留所有权利。

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