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Controllable growth of carbon nanosheets in the montmorillonite interlayers for high-rate and stable anode in lithium ion battery

机译:可控的碳nanosheets增长蒙脱石为高效和夹层稳定的锂离子电池的阳极

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摘要

A novel insertable and pseudocapacitive Li(+)ion material for highly ordered layered montmorillonite/carbon is explored in the present study. The commercially available protonated montmorillonite and 3,3 '-diaminobenzidine act as starting materials to synthesize the layered materialviahydrothermal intercalation, oxidative polymerization and carbonization. This method of preparing montmorillonite/carbon nanocomposite exhibits several advantages. To be specific, raw materials are low cost and naturally abundant; the montmorillonite can undergo proton exchange easily to form a permutable proton-type material, and the protons in the layered nanocomposite can be directly substituted by the polymerizable molecules (e.g., 3,3 '-diaminobenzidine). Accordingly, a sheet-like montmorillonite/carbon layered nanocomposite is achieved with the carbon stacking on the montmorillonite substrate for the intercalation behavior. As revealed from the electrochemical results, montmorillonite/carbon nanocomposite can deliver a high reversible capacity of 1432 mA h g(-1)at 50 mA g(-1)and superior rate capacity of 920 mA h g(-1)at 10 000 mA g(-1)for the lithium ion battery. Furthermore, the full cell with LiFePO(4)as cathode and montmorillonite/carbon as anode maintains 94% capacity retention over 50 cycles as well as high coulombic efficiency.
机译:一种新颖的可插入的和李pseudocapacitive(+)离子材料高度有序的分层蒙脱石/碳是探讨在当下研究。蒙脱石和3,3 ' -diaminobenzidine充当起始原料合成分层materialviahydrothermal夹层、氧化聚合和碳化。制备蒙脱土/碳纳米复合材料展示几个优点。材料成本低,自然丰富;蒙脱石能接受质子交换容易形成一个能交换的proton-type材料,和质子层状纳米复合材料直接由polymerizable代替分子(例如,3、3 ' -diaminobenzidine)。因此,一个像平板一样蒙脱石/碳层状纳米复合材料是实现碳堆积的蒙脱石基质夹层的行为。电化学结果,蒙脱石/碳纳米复合材料可以提供较高的可逆的容量1432毫安h g(1)马50 g (1)优越的额定容量920毫安h g在000 (1)马g(1)锂离子电池。完整的细胞与LiFePO作为阴极和(4)蒙脱石/碳阳极保持94%以及高容量保留超过50周期库仑效率。

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