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Nature of Novel 2D van der Waals Heterostructures for Superior Potassium Ion Batteries

机译:新型2D van der Wa族异质结构,用于卓越的钾离子电池

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Novel 2D van der Waals heterostructures with innovative bimetallic oxychloride (Bi- and Sb-based oxychloride) nanosheets that are well dispersed on reduced graphene oxide nanosheets, are established through element engineering for superior potassium ion battery (PIBs) anodes. This material displays an exceptional electrochemical performance, obtaining a discharge capacity as high as 360 mAh g(-1) at 100 mA g(-1) after running 1000 cycles for over 9 months with a capacity preservation percentage of 88.5% and achieving a discharge capacity as high as 319 mAh g(-1) at 1000 mA g(-1), in addition to the low charge/discharge plateaus for anodes and promising full cell performance. More significantly, the nature of such 2D van der Waals heterostructures, including the element engineering for morphology control, the function of each component of heterostructures, the mechanism of potassium ion storage, and the process of K+ intercalation accompanied with the lattice distortion and chemical bond breakages, is explored in depth. This study is critical for not only paving the way for the practical application of PIBs but also shedding light on fundamentals of potassium ion storage in 2D van der Waals heterostructures.
机译:通过元件工程,通过用于优质钾离子电池(PIBS)阳极的元件工程,建立了具有创新的二氧化二氯化酰氧化氯化乙酰氯化物(Bi-and SB基氧化氯化乙酰氯化物)纳米睾丸的新型2D van der Waves的异质结构。该材料显示出卓越的电化学性能,在运行1000次循环后在100 mA g(-1)上以超过9个月的电量保存百分比为88.5%并实现放电后,获得高达360mahg(-1)的放电容量。除了阳极的低电荷/放电平台和有希望的全细胞性能之外,容量高达319 mAh g(-1),除了低电平/放电平台之外。更重要的是,这种2D van der Wa种异性结构的性质,包括形态控制的元素工程,异质结构的每个组分的功能,钾离子储存的机制,以及k +嵌入的过程伴随着晶格变形和化学键破损,深入探索。本研究对于不仅为PIB的实际应用铺平了途径至关重要,而且对2D van der Waals异质结构中的钾离子储存的基础铺平了光线。

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