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Engineering the Surface/Interface Structures of Titanium Dioxide Micro and Nano Architectures towards Environmental and Electrochemical Applications

机译:为环境和电化学应用设计二氧化钛微纳结构的表面/界面结构

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摘要

Titanium dioxide (TiO₂) materials have been intensively studied in the past years because of many varied applications. This mini review article focuses on TiO₂ micro and nano architectures with the prevalent crystal structures (anatase, rutile, brookite, and TiO₂(B)), and summarizes the major advances in the surface and interface engineering and applications in environmental and electrochemical applications. We analyze the advantages of surface/interface engineered TiO₂ micro and nano structures, and present the principles and growth mechanisms of TiO₂ nanostructures via different strategies, with an emphasis on rational control of the surface and interface structures. We further discuss the applications of TiO₂ micro and nano architectures in photocatalysis, lithium/sodium ion batteries, and Li-S batteries. Throughout the discussion, the relationship between the device performance and the surface/interface structures of TiO₂ micro and nano structures will be highlighted. Then, we discuss the phase transitions of TiO₂ nanostructures and possible strategies of improving the phase stability. The review concludes with a perspective on the current challenges and future research directions.
机译:近年来,由于许多不同的应用,对二氧化钛(TiO 2)材料进行了深入的研究。这篇简短的评论文章重点介绍具有普遍晶体结构(锐钛矿,金红石,板钛矿和TiO 2(B))的TiO 2微米和纳米结构,并总结了表面和界面工程以及在环境和电化学应用中的主要进展。我们分析了表面/界面改性的TiO 2纳米和微结构的优势,并通过不同的策略介绍了TiO 2纳米结构的原理和生长机理,重点是对表面和界面结构的合理控制。我们将进一步讨论TiO 2微结构和纳米结构在光催化,锂/钠离子电池和Li-S电池中的应用。在整个讨论中,将强调器件性能与TiO 2微米和纳米结构的表面/界面结构之间的关系。然后,我们讨论了TiO 2纳米结构的相变以及提高相稳定性的可能策略。回顾总结了当前挑战和未来研究方向的观点。

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