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Three-dimensional conducting oxide nanoarchitectures: morphology-controllable synthesis, characterization, and applications in lithium-ion batteries

机译:三维导电氧化物nanoarchitectures: morphology-controllable合成、表征和应用程序锂离子电池

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摘要

We report the synthesis, characterization and applications in Li-ion batteries of a set of 3-dimensional (3-D) nanostructured conducting oxides including fluorinated tin oxide (FTO) and aluminum zinc oxide (AZO). The morphology of these 3-D conducting oxide nanoarchitectures can be directed towards either mono-dispersed hollow nanobead matrix or mono-dispersed sponge-like nanoporous matrix by controlling the surface charge of the templating polystyrene (PS) nanobeads, the steric hindrance and hydrolysis rates of the precursors, pH of the solvents etc. during the evaporative co-assembly of the PS beads. These 3-D nanostructured conducting oxide matrices possess high surface area (over 100 m~2 g~(-1)) and accessible interconnected pores extending in all three spatial dimensions. By optimizing the temperature profile during calcination, we can obtain large area (of a few cm~2) and crack-free nanoarchitectured films with thickness over 60 μm. As such, the sheet resistance of these nanoarchitectured films on FTO glass can reach below 20 Ω per square. The nanoarchitectured FTO electrodes were used as anodes in Li-ion batteries, and they showed an enhanced cycling performance and stability over pure SnO2.
机译:我们报告的合成、表征和在锂离子电池中的应用一组三维(3 d)纳米导电包括氟化锡氧化物(FTO)和氧化物铝氧化锌(偶氮)。这些三维导电氧化物nanoarchitectures可以是指向mono-dispersed空洞nanobead矩阵或mono-dispersed像海绵一样的纳米多孔矩阵通过控制表面模板的聚苯乙烯(PS)nanobeads,位阻和水解利率的前兆,pH值的溶剂等。在蒸发co-assembly PS珠子。矩阵具有高表面积(超过100 m ~ 2g ~(1))和访问互联毛孔在所有三维空间扩展。优化期间的温度曲线煅烧,我们可以获取大区域(一些厘米~ 2)和无nanoarchitectured电影厚度超过60μm。这些阻力nanoarchitectured电影FTO玻璃可以达到低于20Ω/平方。nanoarchitectured FTO电极被用作在锂离子电池阳极,他们展示了提高循环性能和稳定性纯SnO2。

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