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Hierarchical NiO nanobelt film array as an anode for lithium-ion batteries with enhanced electrochemical performance

机译:NiO多层带状薄膜阵列作为锂离子电池阳极的电化学性能增强

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In this study, an ultrathin 2-dimensional hierarchical nickel oxide nanobelt film array was successfully assembled and grown on a Ni substrate as a binder-free electrode material for lithium ion batteries. In the typical synthesis process, the evolution of the nickel oxide array structure was controlled by adjusting the amount of surfactant, duration of reaction time and hydrothermal temperature. By virtue of the beneficial structural characteristics of the nanobelt film array, the as-obtained NiO array electrode exhibits excellent lithium storage capacity (1035?mA h g ~(?1) at 0.2C after 70 cycles and 839 mA h g ~(?1) at 0.5C after 70 cycles) for LIBs. This excellent electrochemical performance is attributed to the nanobelt film (3–5 nm thickness) array structures, which have immense open spaces that offer more Li ~(+) storage active sites and adequate buffering space to reduce internal mechanical stress and shorten the Li ~(+) diffusion distance. Additionally, this array structure is designed to achieve a binder-free and non-conductive additive electrode without complex coating and compressing during the electrode preparation process.
机译:在这项研究中,成功​​地组装了一个超薄的二维分层氧化镍纳米带薄膜阵列,并在Ni基片上生长,作为锂离子电池的无粘合剂电极材料。在典型的合成过程中,通过调节表面活性剂的量,反应时间的持续时间和水热温度来控制氧化镍阵列结构的演变。凭借纳米带膜阵列的有益结构特性,如此获得的NiO阵列电极具有出色的锂存储容量(70个循环后在0.2C下为1035?mA hg〜(?1)和839 mA hg〜(?1)。对于LIB,在70循环后在0.5C下)。这种出色的电化学性能归因于纳米带膜(厚度为3-5 nm)阵列结构,该结构具有巨大的开放空间,可提供更多的Li〜(+)存储活性位点和足够的缓冲空间以减少内部机械应力并缩短Li〜 (+)扩散距离。另外,该阵列结构被设计为实现无粘合剂且不导电的添加剂电极,而无需在电极制备过程中进行复杂的涂覆和压缩。

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