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首页> 外文期刊>Nanoscale >Electronic modulation of nickel selenide by copper doping and in situ carbon coating towards high-rate and high-energy density lithium ion half/full batteries
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Electronic modulation of nickel selenide by copper doping and in situ carbon coating towards high-rate and high-energy density lithium ion half/full batteries

机译:电子调制的硒化镍铜掺杂和原位碳涂层高效和高能量密度锂离子半/全电池

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摘要

Over the past decades, metal selenides have drawn considerable attention due to their high theoretical specific capacity. However, huge volume changes and sluggish electrochemical transfer kinetics hinder their applications in energy storage and conversion. In this work, we demonstrate an efficient and ingenious synthesis strategy to regulate nickel selenide electrodes by the introduction of copper and in situ coating with carbon (Cu-NiSe2@C). When used as anodes for lithium-ion batteries, the as-synthesized Cu-NiSe2@C delivered a high capacity of 1630 mA h g(-1) at 1.0 A g(-1) after 200 cycles and excellent rate performance as well as long-term cycling stability with a high capacity of 489 mA h g(-1) at 10 A g(-1) after 20 000 cycles. When coupled with a commercial LiFePO4 cathode, the full cells showed a high capacity of 463 mA h g(-1) at 0.2 A g(-1). Their superior electrochemical performance can be attributed to the synergistic effect of the in situ carbon coating and copper doping, which can promote the electron/ion transfer kinetics, as well as alleviate the volume expansion during cycling. This work will open new opportunities for the development of high-performance anodes for lithium storage.
机译:在过去的几十年中,金属硒化物相当大的关注由于其高理论比容量。体积变化和缓慢的电化学转移动力学阻碍他们的应用程序能量储存和转换。展示一个高效和巧妙的合成战略管理硒化镍电极通过引入铜和原位涂层与碳(Cu-NiSe2@C)。锂离子电池,as-synthesizedCu-NiSe2@C发表了高容量1630毫安的h1.0 g(1)和g(1) 200年以后周期优秀的速度以及长期性能循环稳定性的高容量489毫安h g (1) 10 g(1)经过20 000周期。再加上商业磷酸铁锂阴极,完整的细胞显示高容量463毫安h0.2 g (1) g(1)。可以归因于电化学性能原位碳的协同效应涂料和铜掺杂,可以促进电子/离子转移的动力学,以及缓解骑行过程中体积膨胀。这项工作将打开新的机遇开发的高性能阳极锂存储。

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