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Natural ore molybdenite as a high-capacity and cheap anode material for advanced lithium-ion capacitors

机译:天然矿石辉钼矿作为先进锂离子电容器的高容量和廉价阳极材料

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Hybrid lithium-ion capacitors (LICs) receive special interests because they work by combining the merits of high-capacity lithium-ion batteries and high-rate capacitors in a Li salt containing electrolyte, so as to bridge the gap between the two devices. One of main challenges for LICs is to develop inexpensive and superior anode materials at high rates. In this work, natural molybdenite was utilized as precursor to achieve the scalable production of cheap MoS2/carbon composites. This molybdenite-derived MoS2/carbon electrode can not only exhibit excellent Li+-storage performances including ultrahigh specific capacity (1427 mAh g(-1) after 1000 cycles at 1 A g(-1)) and rate capability (554 mAh g(-1) at 10 A g(-1)), but also possess four-times higher tap density than that of commercial graphite. By employing MoS2/carbon as the anode and activated carbon as the cathode, the as-assembled LIC device delivers both high energy//high power density and long cycle lifespan. Furthermore, the price is nearly 200 orders of magnitude lower than the traditional high-purity chemicals, which can be easily scaled up to achieve high-throughput production.
机译:混合锂离子电容器 (LIC) 因其在含锂盐电解质中结合高容量锂离子电池和高倍率电容器的优点而受到特别关注,从而弥合了两种器件之间的差距。低收入国家面临的主要挑战之一是以高速率开发廉价和优质的负极材料。在这项工作中,利用天然辉钼矿作为前驱体,实现了廉价MoS2/碳复合材料的可扩展生产。这种辉钼矿衍生的MoS2/碳电极不仅具有优异的Li+存储性能,包括超高的比容量(1000次循环后为1427 mAh g(-1)和倍率能力(554 mAh g(-1)在10 A g(-1)),而且具有比商业石墨高四倍的振实密度。通过采用MoS2/碳作为阳极,活性炭作为阴极,组装后的LIC器件具有高能量//高功率密度和长循环寿命。此外,价格比传统的高纯化学品低近200个数量级,可以很容易地扩大规模,实现高产量生产。

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