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Effects of Thickness and Preheated Temperature on Grains Orientation of 2D-ZnO Nanostructure and their Photocatalytic Activity

机译:厚度和预热温度对2D-ZnO纳米结构晶粒取向的影响及其光催化活性

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摘要

The effects of pre-heating temperature and thickness of layers on (002) preferred orientation of ZnO thin films and their photocatalytic activity are reported. All films crystallize into a Zincite-type structure. With increasing pre-heating temperature, the evolution from (002) to (101) diffraction peaks indicates change in growth mode of ZnO films. Pre-heating at 100°C is the most favourable for highly oriented ZnO thin films along (002) plane whereas all films deposited with different number of layers are oriented along (101) plane. The crystallite size is found to be in the range 20 - 32 nm. The observed average optical transmittance for these films is higher than 90% in the visible range. The energy band gap decreases with increasing number of layers but increases with increasing pre-heating temperatures_(.)Wettability tests of ZnO thin films surface show a hydrophobic aspect for all films. The film pre-heated at 400°C with 223nm of thickness exhibits the highest degradation of methyl blue dye of 94% with high levels of photostability over five cycles.
机译:报道了预热温度和层厚度对(002)ZnO薄膜的优选取向及其光催化活性的影响。所有薄膜均匀地结晶到锌型结构中。随着预热温度的增加,(002)至(101)衍射峰的演化表明ZnO膜的生长模式的变化。在100℃下预热是最有利的,对于沿(002)平面的高度取向的ZnO细滤网最有利,而用不同数量的层沉积的所有薄膜沿(101)平面取向。结晶尺寸被发现为20-32nm的范围。这些薄膜的观察到的平均光学透射率在可见范围内高于90%。能带隙随着层数的增加而降低,但随着预热温度的增加而增加,ZnO薄膜表面的润湿性试验显示了所有薄膜的疏水方面。在400℃下预热的薄膜具有223nm的厚度,其甲基蓝色染料的最高降解为94%,具有五个循环的高水平光稳定性。

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