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钛基底上二氧化钛纳米结构的可调生长

Tunable growth of TiO(2) nanostructures on Ti substrates.

作者信息

Peng Xinsheng, Wang Jingpeng, Thomas Dan F, Chen Aicheng

机构信息

Department of Chemistry, Lakehead University, Thunder Bay, ON, P7B 5E1, Canada.

出版信息

Nanotechnology. 2005 Oct;16(10):2389-95. doi: 10.1088/0957-4484/16/10/066. Epub 2005 Sep 2.

Abstract

A simple and facile method is described to directly synthesize TiO(2) nanostructures on titanium substrates by oxidizing Ti foil using small organic molecules as the oxygen source. The effect of reaction temperature and oxygen source on the formation of the TiO(2) nanostructures has been studied using scanning electron microscopy, x-ray diffraction, transmission electron microscopy, Raman spectroscopy and water contact angle measurement. Polycrystalline grains are formed when pure oxygen and formic acid are used as the oxygen source; elongated micro-crystals are produced when water vapour is used as the oxygen source; oriented and aligned TiO(2) nanorod arrays are synthesized when ethanol, acetaldehyde or acetone are used as the oxygen source. The growth mechanism of the TiO(2) nanostructures is discussed. The diffusion of Ti atoms to the oxide/gas interface via the network of the grain boundaries of the thin oxide layer is the determining factor for the formation of well-aligned TiO(2) nanorod arrays. The wetting properties of the TiO(2) nanostructured surfaces formed are dictated by their structure, varying from a hydrophilic surface to a strongly hydrophobic surface as the surface structure changes from polycrystalline grains to well-aligned nanorod arrays. This tunable growth of TiO(2) nanostructures is desirable for promising applications of TiO(2) nanostructures in the development of optical devices, sensors, photo-catalysts and self-cleaning coatings.

摘要

描述了一种简单易行的方法,通过使用小分子有机物作为氧源氧化钛箔,在钛基底上直接合成TiO₂纳米结构。利用扫描电子显微镜、X射线衍射、透射电子显微镜、拉曼光谱和水接触角测量研究了反应温度和氧源对TiO₂纳米结构形成的影响。当使用纯氧和甲酸作为氧源时形成多晶晶粒;当使用水蒸气作为氧源时产生拉长的微晶;当使用乙醇、乙醛或丙酮作为氧源时合成取向和排列的TiO₂纳米棒阵列。讨论了TiO₂纳米结构的生长机制。Ti原子通过薄氧化层晶界网络扩散到氧化物/气体界面是形成排列良好的TiO₂纳米棒阵列的决定因素。所形成的TiO₂纳米结构表面的润湿性由其结构决定,随着表面结构从多晶晶粒变为排列良好的纳米棒阵列,表面从亲水性表面变为强疏水性表面。TiO₂纳米结构的这种可调谐生长对于TiO₂纳米结构在光学器件、传感器、光催化剂和自清洁涂层开发中的应用前景是有利的。

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