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3D ordered carbon/SnO2 hybrid nanostructures for energy storage applications

机译:用于储能应用的3D有序碳/ SnO2混合纳米结构

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Increasing the specific capacity and cycle life of graphitic carbon anodes is crucial for realizing high-performance lithium ion batteries. Herein, we introduce a new class of graphitic carbon anodes comprising highly ordered three-dimensional nanostructures decorated with SnO2 nanoparticles. The inch-scale, nanostructured graphitic carbon matrices are prepared by supported pyrolysis of epoxy templates patterned by advanced optical lithography. During the subsequent decoration process, the SnO2 nanoparticles are densely formed on the matrix without agglomeration since the periodic nanostructured matrix provides a homogeneous site for nucleation and growth. The surface coverage of the decorated SnO2 nanoparticles and the mass relative to the graphitic carbon are 80% and similar to 50 wt%, respectively. The resulting nanostructured C/SnO2 composite monoliths can be assembled solely into LIB coin cells without the aid of binders and conducting agents. The achieved specific capacity and retention are 692 mAh g(-1) and 87.31% (at 70th cycle), respectively, which is superior to those of nanostructured carbon anodes prepared in a similar way. (C) 2018 Elsevier Ltd. All rights reserved.
机译:增加石墨碳阳极的特定容量和循环寿命对于实现高性能锂离子电池至关重要。在此,我们介绍了一种新的石墨碳阳极,包括用SnO2纳米颗粒装饰的高度有序的三维纳米结构。通过先进光学光刻图案化的环氧模板的负载热解来制备英寸级纳米结构纳米型碳矩阵。在随后的装饰过程中,SnO2纳米颗粒在基质上密集地形成,而无需附聚,因为周期性纳米结构基质提供均匀位点以进行成核和生长。装饰的SnO2纳米颗粒的表面覆盖和相对于石墨碳的质量分别为80%且相似至50wt%。所得纳米结构的C / SnO 2复合石体可以仅在没有粘合剂和导电剂的借助于Lib枚芯细胞中组装。实现的具体容量和保留分别为692mAhg(-1)和87.31%(在第70周期),其优于以类似方式制备的纳米结构碳阳极的碳阳极。 (c)2018年elestvier有限公司保留所有权利。

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