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首页> 外文期刊>ACS applied materials & interfaces >Three-Dimensional Ni/SnO_x/C Hybrid Nanostructured Arrays for Lithium-Ion Microbattery Anodes with Enhanced Areal Capacity
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Three-Dimensional Ni/SnO_x/C Hybrid Nanostructured Arrays for Lithium-Ion Microbattery Anodes with Enhanced Areal Capacity

机译:具有增强的区域容量的用于锂离子微电池阳极的三维Ni / SnO_x / C混合纳米结构纳米阵列

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摘要

The areal capacity of lithium-ion microbatteies (LIMBs) can be potentially increased by adopting a three-dimensional (3D) architectured electrode. Herein, we report the novel 3D Ni/SnO_x/C hybrid nanostructured arrays that were built directly on current collectors via a facile hydrothermal method followed by a calcination-reduction process. Branched SnO2 nanorods grew uniformly on Ni2(OH)2CO3 nanowall arrays, resulting in the formation of precursors with a 3D interconnected architecture. By using ethylene glycol as the reducing agent, the glucose-coated SnO2/Ni2(OH)2CO3 precursors were evolved into an interesting 3D Ni/SnO_x/C hybrid nanostructured arrays within the calcination treatment. Compared to conventional 2D SnO_x/C nanorod arrays, the electrode of 3D Ni/SnCV/C hybrid nanostructured arrays exhibited enhanced lithium storage capacity per unit area, preferable rate capability and improved cycling performance when tested for LIMBs. The superior performance might be attributed to the open-up Ni frameworks that can not only serve as effective channels for electrons transport and Li~+ diffusion but also help to accommodate the large volume changes upon lithiation/delithiation.
机译:通过采用三维(3D)结构的电极,锂离子微电池(LIMB)的面积容量可以潜在地提高。在这里,我们报告了新颖的3D Ni / SnO_x / C杂化纳米结构阵列,该阵列通过简便的水热方法直接在集电器上构建,然后进行煅烧还原工艺。支化的SnO2纳米棒在Ni2(OH)2CO3纳米壁阵列上均匀生长,从而形成具有3D互连结构的前驱体。通过使用乙二醇作为还原剂,在煅烧处理过程中,将涂有葡萄糖的SnO2 / Ni2(OH)2CO3前驱体演化为有趣的3D Ni / SnO_x / C杂化纳米结构阵列。与常规2D SnO_x / C纳米棒阵列相比,3D Ni / SnCV / C混合纳米结构阵列的电极在测试LIMB时表现出增强的每单位面积锂存储容量,更好的倍率能力和改善的循环性能。优异的性能可能归因于开放的Ni骨架,它不仅可以充当电子传输和Li〜+扩散的有效通道,而且还有助于适应锂化/去锂化过程中的大体积变化。

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