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首页> 外文期刊>Phase Transitions >Study of the structural phase transformation, and optical behavior of the as synthesized ZnO-SnO2-TiO2 nanocomposite
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Study of the structural phase transformation, and optical behavior of the as synthesized ZnO-SnO2-TiO2 nanocomposite

机译:合成的ZnO-SnO2-TiO2纳米复合材料的结构相变及其光学性能的研究

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摘要

Bulk nanocomposites ZnO-SnO2-TiO2 were synthesized by solid-state reaction method. The X-ray diffraction patterns and Raman spectra of bulk nanocomposite as a function of sintering temperature (700 degrees C-1300 degrees C) indicate that the structural phases of SnO2 and TiO2 depend on the sintering temperature while the ZnO retains its hexagonal wurtzite phase at all sintering temperatures and SnO2 started to transform into SnO at 900 degrees C and completely converted into SnO at 1100 degrees C, whereas the titanium dioxide (TiO2) exhibits its most stable phase such as rutile at low sintering temperature (<= 900 degrees C) and it transforms partially into brookite phase at high sintering temperature (>= 900 degrees C). The optical band gap of nanocomposite ZnO-SnO2-TiO2 sintered at 700 degrees C, 900 degrees C, 1100 degrees C and 1300 degrees C for 16 hours is calculated using the transformed diffuse reflectance ultra violet visible near infra red (UV-VisNIR) spectra and has been found to be 3.28, 3.29, 3.31 and 3.32 eV, respectively.
机译:通过固相反应法合成了块状纳米复合材料ZnO-SnO2-TiO2。块状纳米复合材料的X射线衍射图和拉曼光谱随烧结温度(700℃至1300℃)而变化,表明SnO2和TiO2的结构相取决于烧结温度,而ZnO保留其六方纤锌矿相。所有的烧结温度和SnO2在900摄氏度时开始转变为SnO,并在1100摄氏度时完全转变为SnO,而二氧化钛(TiO2)在低烧结温度(<= 900摄氏度)时表现出最稳定的相,例如金红石并在较高的烧结温度(> = 900摄氏度)下部分转变为板钛矿相。使用转换后的漫反射紫外可见近红外(UV-VisNIR)光谱计算在700摄氏度,900摄氏度,1100摄氏度和1300摄氏度下烧结16个小时的纳米复合ZnO-SnO2-TiO2的光学带隙。分别为3.28、3.29、3.31和3.32 eV。

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