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首页> 外文期刊>Nano Energy >3D hierarchical defect-rich NiMo3S4 nanosheet arrays grown on carbon textiles for high-performance sodium-ion batteries and hydrogen evolution reaction
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3D hierarchical defect-rich NiMo3S4 nanosheet arrays grown on carbon textiles for high-performance sodium-ion batteries and hydrogen evolution reaction

机译:3D层次缺陷的NIMO3S4纳米筒阵列在碳纺织品上生长,用于高性能钠离子电池和氢气进化反应

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摘要

A hierarchical hybrid nanostructure composed of NiMo3S4 nanosheet arrays with abundant exposed edges on flexible carbon textiles (denoted as NiMo3S4/CTs) has been designed and synthesized for sodium ion batteries (SIBs) and electrocatalytic hydrogen evolution reaction (HER). The novel NiMo3S4 nanostructure, formed by incorporating Ni2+ into Mo-S lattice, shows plenty of substantial defects and active sites, which are favorable for the improvement of the overall electrochemical performances for both SIBs and HER. When evaluated as the anode of SIBs, the NiMo3S4/CT electrode delivers a high specific capacity of similar to 480 mA h g(-1) at a current density of 0.12 A g(-1) and a high Coulombic efficiency of 100%. Moreover, the NiMo3S4/CT electrode shows an excellent long-term cycling performance with a high reversible capacity of similar to 302 mA h g(-1) after 1000 cycles at 0.48 A g(-1), showing a high capacity retention of 73.9%. Furthermore, as a HER catalyst, the NiMo3S4/CT hybrid nanostructure exhibits a low onset over-potential of 0.124 V, a small Tafel slope of 46.2 mV dec(-1) as well as an excellent long-term stability, which are among the best values of current noble-metal-free electrocatalysts. These results may open up a new route to introduce more active defect sites to enhance the electrochemical performance of metal sulfides by incorporation of metal elements.
机译:由柔性碳纺织品上具有丰富的暴露边缘的Nimo3S4纳米晶片阵列组成的分层混合纳米结构已经设计和合成了钠离子电池(SIB)和电催化氢进化反应(她)。通过将Ni2 +掺入MO-S晶格中形成的新型Nimo3S4纳米结构,显示出大量的大量缺陷和活性位点,这有利于改善SIBS和她的整体电化学性能。当评估为SIBs的阳极时,Nimo3S4 / CT电极以0.12Ag(-1)的电流密度,高等的基本效率为480mA H G(-1)的高比容量。此外,NiMO3S4 / CT电极显示出优异的长期循环性能,在0.48Ag(-1)的1000次循环后,高可逆容量的高可逆能力相似,显示出73.9%的高容量保留。此外,作为她的催化剂,Nimo3S4 / CT杂化纳米结构表现出0.124V的低发病率,小Tafel斜率为46.2mV(-1),以及优异的长期稳定性,是其中目前无金属无金属电催化剂的最佳值。这些结果可以打开新的途径来引入更活跃的缺陷位点,以通过掺入金属元素来增强金属硫化物的电化学性能。

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