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首页> 外文期刊>Nanoscale Horizons >Aligned metal oxide nanotube arrays: key-aspects of anodic TiO2 nanotube formation and properties
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Aligned metal oxide nanotube arrays: key-aspects of anodic TiO2 nanotube formation and properties

机译:对准的金属氧化物纳米管阵列:阳极TiO2纳米管形成和性能的关键方面

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摘要

Over the past ten years, self-aligned TiO2 nanotubes have attracted tremendous scientific and technological interest due to their anticipated impact on energy conversion, environment remediation and biocompatibility. In the present manuscript, we review fundamental principles that govern the self-organized initiation of anodic TiO2 nanotubes. We start with the fundamental question: why is self-organization taking place? We illustrate the inherent key mechanistic aspects that lead to tube growth in various different morphologies, such as ripple-walled tubes, smooth tubes, stacks and bamboo-type tubes, and importantly the formation of double-walled TiO2 nanotubes versus single-walled tubes, and the drastic difference in their physical and chemical properties. We show how both double- and single-walled tube layers can be detached from the metallic substrate and exploited for the preparation of robust self-standing membranes. Finally, we show how by selecting specific growth approaches to TiO2 nanotubes desired functional features can be significantly improved, e.g., enhanced electron mobility, intrinsic doping, or crystallization into pure anatase at high temperatures can be achieved. Finally, we briefly outline the impact of property, modifications and morphology on functional uses of self-organized nanotubes for most important applications.
机译:在过去的十年中,自对准的TiO2纳米管由于其对能量转换,环境修复和生物相容性的预期影响而吸引了巨大的科学技术兴趣。在本手稿中,我们回顾了控制阳极TiO2纳米管自组织引发的基本原理。我们从一个基本问题开始:为什么要进行自组织?我们说明了导致管以各种不同形态生长的内在关键机理,例如波纹壁管,光滑管,叠层和竹型管,以及重要的是与单壁管相比,双壁TiO2纳米管的形成,以及它们在物理和化学性质上的巨大差异。我们展示了如何将双壁和单壁管层都从金属基材上拆下并用于制备坚固的自立式膜。最后,我们展示了如何通过选择特定的TiO2纳米管生长方法来显着改善所需的功能特征,例如可以提高电子迁移率,固有掺杂或在高温下结晶为纯锐钛矿。最后,我们简要概述了性质,修饰和形态对自组织纳米管用于最重要应用的功能用途的影响。

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