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TiO纳米结构在各种表面上的形成与结晶。

Formation and crystallization of TiO nanostructures on various surfaces.

作者信息

Jaffari Ghulam Hassnain, Hussain Tanvir, Iqbal Asad Muhammad, Abbas Yawar

机构信息

Department of Physics, Quaid-i-Azam University, Islamabad, Pakistan.

Department of Basic Sciences and Humanities, College of Electrical and Mechanical Engineering, National University of Sciences and Technology, Islamabad, Pakistan.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2022 Aug 1;78(Pt 4):593-605. doi: 10.1107/S2052520622005042. Epub 2022 Jul 7.

Abstract

A comparative study of the synthesis of TiO nanorods on fluorine-doped tin oxide (FTO) glass, Si, SiO, Si/Ta, Si/TiN, Si/TiN/Ti and Si/HFO substrates by hydrothermal reaction is presented. Detailed analysis on the growth of TiO on pre-annealed Si/TiN/Ti and HfO (HFO) surfaces is also given. For Si/TiN/Ti, a pre-annealing procedure led to the transformation of Ti to a TiO layer which acts as a seed for aligned growth of TiO nanorods. In contrast, Si/HFO does not provide a nucleation site for the formation of aligned nanorods. Various samples were prepared by varying the synthesis conditions, i.e. pre- and post-annealing temperatures and hydrothermal reaction time to figure out the optimum conditions which lead to unidirectional and highly aligned nanorods. X-ray diffraction, scanning electron microscopy, ultraviolet-visible spectroscopy and Raman spectroscopy were used to study structural, morphological and optical properties of synthesized samples. It is found that TiO nanorods exhibit a rutile phase on the Si/Ti/TiN and Si/HFO substrates, but highly oriented vertical growth of nanorods has been observed only on pre-annealed Si/TiN/Ti substrates. On the other hand, TiO nanorods form dandelion-like structures on Si/HFO substrates. Growth of vertically oriented TiO nanorods on Si/TiN/Ti is attributed to the TiO seed layer which forms after the process of pre-annealing of substrates at a suitable temperature. Variation in hydrothermal reaction time and post-annealing temperature brings further improvement in crystallinity and morphology of nanorods. This work shows that the pre-annealed Si/TiN/Ti substrate is the optimal choice to achieve vertically oriented, highly aligned TiO nanorods.

摘要

本文介绍了通过水热反应在氟掺杂氧化锡(FTO)玻璃、硅、二氧化硅、硅/钽、硅/氮化钛、硅/氮化钛/钛和硅/铪氧化物(HFO)衬底上合成TiO纳米棒的对比研究。还对预退火的硅/氮化钛/钛和铪氧化物(HFO)表面上TiO的生长进行了详细分析。对于硅/氮化钛/钛,预退火过程导致Ti转变为TiO层,该层作为TiO纳米棒定向生长的晶种。相比之下,硅/铪氧化物(HFO)不能为定向纳米棒的形成提供成核位点。通过改变合成条件,即预退火和后退火温度以及水热反应时间,制备了各种样品,以找出导致单向且高度对齐纳米棒的最佳条件。利用X射线衍射、扫描电子显微镜、紫外可见光谱和拉曼光谱研究了合成样品的结构、形态和光学性质。发现TiO纳米棒在硅/钛/氮化钛和硅/铪氧化物(HFO)衬底上呈现金红石相,但仅在预退火的硅/氮化钛/钛衬底上观察到纳米棒的高度取向垂直生长。另一方面,TiO纳米棒在硅/铪氧化物(HFO)衬底上形成蒲公英状结构。硅/氮化钛/钛上垂直取向的TiO纳米棒的生长归因于在合适温度下对衬底进行预退火后形成的TiO籽晶层。水热反应时间和后退火温度的变化进一步改善了纳米棒的结晶度和形态。这项工作表明,预退火的硅/氮化钛/钛衬底是实现垂直取向、高度对齐的TiO纳米棒的最佳选择。

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