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Nitrogen-doped carbon nanoboxes as high rate capability and long-life anode materials for high-performance Li-ion capacitors

机译:氮掺杂碳纳米氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧氧化物和用于高性能锂离子电容器的长寿命阳极材料

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摘要

Lithium ion capacitors (LICs), lately evolved energy storage devices which integrate the merits of both lithium ion batteries (LIBs) and supercapacitors (SCs) for high energy and power densities, have attracted substantial research attention in recent years. Here, a Prussian blue analogue nanocube templating process was developed to produce N-doped carbon nanoboxes (N-CNB) as high performance anode materials for lithium ion based energy storage. The N-CNB exhibited high specific capacities and excellent rate capability and cycling performances as an anode. If paired with glucose derived carbon nanospheres (GCNS) cathodes, the N-CNB//GCNS LIC delivered a high energy density of 77.5 Wh kg(-1) at the power density of 311.3 W kg(-1) and maintained a decent energy density of 40.4 Wh kg(-1) at a high power density of 112 kW kg(-1). Its cycling performances were outstanding, reaching an ultrahigh, over 100%, capacity retention of 138% after a 40,000 cycle operation at 10 A g(-1), attributable to the continuous electrochemical activation of the electrode materials. The success of the present LIC can be attributed to the advantageous nanobox structure in serving as nano-reservoirs for Li-ion to enable local, fast lithiation/delithiation and in buffering the volume expansion/shrinkage during lithiation/delithiation cycles.
机译:锂离子电容器(LICS),最近进化的能量存储装置,其将锂离子电池(LIBS)和超级电容器(SCS)的优点集成了高能量和功率密度,近年来引起了大量的研究关注。这里,开发了普鲁士蓝色模拟纳米轴模板模板模板,以产生N-掺杂的碳纳米氧氧氧氧氧氧化碳(N-CNB),作为用于锂离子的锂离子的能量储存的高性能阳极材料。 N-CNB表现出高特定的容量和优异的速率能力和作为阳极的循环性能。如果与葡萄糖衍生的碳纳米球(GCNS)阴极配对,则N-CNB // GCNS LIC在311.3Wkg(-1)的功率密度下,高能量密度为77.5WH kg(-1),并保持了体面的能量密度为40.4WH kg(-1),高功率密度为112 kW kg(-1)。其循环性能卓越,达到超高,超过100%,在10Ag(-1)的40,000次循环操作后,容量保留为138%,可归因于电极材料的连续电化学激活。本地LIC的成功可归因于作为锂离子的纳米储存器中的有利纳米框结构,以使局部,快速锂化/脱位和缓冲锂化/脱锂循环期间缓冲体积膨胀/收缩。

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