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大面积TiS-TiO异质结构及钛箔上S掺杂TiO纳米片的演变

Evolution of large area TiS-TiO heterostructures and S-doped TiO nano-sheets on titanium foils.

作者信息

Etghani S Ahmad, Ansari E, Mohajerzadeh S

机构信息

Thin Film and Nanoelectronic Lab, School of electrical and computer Eng., University of Tehran, Tehran, Iran.

出版信息

Sci Rep. 2019 Nov 29;9(1):17943. doi: 10.1038/s41598-019-53651-y.

Abstract

We report a novel and facile method to synthesize sulfur-doped titanium oxide sheets and realize TiS-TiO heterostructures by means of a sequential sulfurization and oxidation step in a dual-zone chemical vapor deposition furnace. The inclusion of chlorine and argon gases during the growth of such titanium-based compounds plays a critical role in the formation of desired geometries and crystalline structures. These heterostructures possess nano-whisker and nanosheet configurations, controlled by adjusting the growth parameters such as temperature, carrier gas and the sequencing between different steps of the growth. The evolution of these complex heterostructures has been investigated using Raman spectroscopy and EDS characterization. The presence of chlorine gas during the growth results in local TiS formation as well as faceted growth of TiO nanosheets through anatase to rutile phase change prohibition. The electron microscopy (TEM) images and diffraction pattern (SAED) characterization reveal the crystallinity and layered nature of grown structures, further demonstrating the 2D characteristics of S-doped nanosheets. The evolution of TiO on TiS heterostructures has also has been verified using XPS analysis. These highly featured nanostructures are suitable candidates to enhance the photocatalytic behavior of TiO nanostructures.

摘要

我们报道了一种新颖且简便的方法,通过在双区化学气相沉积炉中进行连续的硫化和氧化步骤来合成硫掺杂的氧化钛片并实现TiS-TiO异质结构。在这类钛基化合物生长过程中引入氯气和氩气,对所需几何形状和晶体结构的形成起着关键作用。这些异质结构具有纳米晶须和纳米片构型,可通过调节生长参数(如温度、载气以及生长不同步骤之间的顺序)来控制。利用拉曼光谱和能谱表征研究了这些复杂异质结构的演变。生长过程中氯气的存在导致局部形成TiS,并通过禁止锐钛矿相向金红石相转变使TiO纳米片呈现出多面生长。电子显微镜(TEM)图像和衍射图案(SAED)表征揭示了生长结构的结晶度和层状性质,进一步证明了硫掺杂纳米片的二维特性。还通过XPS分析验证了TiO在TiS异质结构上的演变。这些具有高度特性的纳米结构是增强TiO纳米结构光催化性能的合适候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e1f/6884512/69bef5f57bda/41598_2019_53651_Sch1_HTML.jpg

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