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Floating Growth of Large-Scale Freestanding TiO2 Nanorod Films at the Gas-Liquid Interface for Additive-Free Li-Ion Battery Applications

机译:用于无添加剂锂离子电池应用的气-液界面上的大型独立式TiO2纳米棒薄膜的漂浮生长

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摘要

The floating growth process of large-scale freestanding TiO2 nanorod films at the gas—liquid interface was investigated. On the basis of the experiments, a self-templated growth scenario was developed to account for the self-assembly process, In the scenario, titanium complexes function not only as the Ti source for the growth of TiO2 but also as a soft template provider for the floating growth. According to the scenario, several new recipes of preparing freestanding TiO2 nanorod films at the gas—liquid interface were developed. The freestanding film was applied to a lithium ion battery as a binder-free and conducting agent-free anode, and good cyclability was obtained, This work may pave a new way to floating and freestanding TiO2 and other semiconductor materials, which has great potential not only in basic science but also in the applications such as materials engineering, Li-ion battery, photocatalyst, dye-sensitized solar cell, and flexible electronics.
机译:研究了大型独立式TiO2纳米棒膜在气液界面处的漂浮生长过程。在实验的基础上,开发了一种自模板生长方案以说明自组装过程。在该方案中,钛络合物不仅充当TiO2生长的Ti来源,而且还充当TiO2的软模板提供者。浮动增长。根据该方案,开发了在气-液界面处制备独立式TiO2纳米棒膜的几种新方法。将该独立膜作为无粘结剂,无导电剂的阳极应用于锂离子电池,具有良好的循环性,这项工作可能为浮法和独立的TiO2等半导体材料铺平道路,具有巨大的潜力。不仅在基础科学领域,而且在材料工程,锂离子电池,光催化剂,染料敏化太阳能电池和柔性电子产品等应用中也是如此。

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