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首页> 外文期刊>Angewandte Chemie >Self-Sustained Cycle of Hydrolysis and Etching at Solution/Solid Interfaces: A General Strategy To Prepare Metal Oxide Micro-/Nanostructured Arrays for High-Performance Electrodes
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Self-Sustained Cycle of Hydrolysis and Etching at Solution/Solid Interfaces: A General Strategy To Prepare Metal Oxide Micro-/Nanostructured Arrays for High-Performance Electrodes

机译:水解和溶液/固相界面蚀刻的自持循环:制备用于高性能电极的金属氧化物微/纳米结构阵列的一般策略

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摘要

Assembling micro-anostructured arrays on conducting substrates allows the integration of multiple functionalities into modern electronic devices. Herein, a novel self-sustained cycle of hydrolysis and etching (SCHE) is exploited to selectively synthesize an extensive series of metal oxide micro-anostructured arrays on a wide range of metal substrates, establishing the generality and efficacy of the strategy. To demonstrate the potential application of this method, the as-prepared NiO porous nanobelt array was directly used as the anode for lithium-ion batteries, exhibiting excellent capacity and rate capability. Conclusively, the SCHE strategy offers a systematic approach to design metal oxide micro-anostructured arrays on metal substrates, which are valuable not only for lithium-ion batteries but also for other energy conversion and storage systems and electronic devices at large.
机译:在导电基板上组装微/纳米结构阵列可以将多种功能集成到现代电子设备中。本文中,利用新颖的自持水解和蚀刻循环(SCHE)在多种金属基材上选择性地合成了一系列广泛的金属氧化物微/纳米结构阵列,从而确立了该策略的普遍性和有效性。为了证明该方法的潜在应用,将制备好的NiO多孔纳米带阵列直接用作锂离子电池的负极,具有出色的容量和倍率性能。最终,SCHE策略提供了一种系统的方法来设计金属基板上的金属氧化物微/纳米结构阵列,这不仅对锂离子电池有价值,而且对其他能量转换和存储系统以及整个电子设备也很有价值。

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