首页> 外文期刊>Journal of Materials Science >Tuning the photoelectronic and photocatalytic properties of single-crystalline TiO2 nanosheet array films with dominant {001} facets by controlling the hydrochloric acid concentration
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Tuning the photoelectronic and photocatalytic properties of single-crystalline TiO2 nanosheet array films with dominant {001} facets by controlling the hydrochloric acid concentration

机译:通过控制盐酸浓度来调节具有主要{001}面的单晶TiO2纳米片阵列膜的光电和光催化性能

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摘要

Single-crystalline TiO2 nanosheet array films with tunable percentage of exposed {001} facets were synthesized on FTO by a simple hydrothermal method. The effects of the hydrochloric acid concentration on morphology, crystal structure, and optical property have been investigated by scanning electron microscopy, high-resolution transmission electron microscopy, X-ray diffraction, micro-Raman spectroscope system, and UV-Vis spectrophotometer. When the hydrochloric acid concentration increases from 4.8 to 5.2 mol/L, dense regular nanosheets tend to grow perpendicular to the substrate surface, and the percentage of exposed {001} facets is increasing from 76 to 84 %. Evolution of these nanosheet array films has accompanied by significant variations of photoelectronic and photocatalytic properties. The intensity of Raman peak E (g) at 144 cm(-1) decreases, and the photocurrent increases when more proportion areas of {001} facets are exposed. The sample prepared at hydrochloric acid concentration of 4.8 mol/L shows the highest photocatalytic activity. This can be explained by the preferential carrier transport to different facets of the TiO2 crystal with tradeoff relation between the {101} and {001} facets, and a increasing of total catalytic sites.
机译:通过简单的水热法在FTO上合成了具有可调百分比的{001}小面暴露率的单晶TiO2纳米片阵列膜。已通过扫描电子显微镜,高分辨率透射电子显微镜,X射线衍射,显微拉曼光谱仪系统和紫外可见分光光度计研究了盐酸浓度对形貌,晶体结构和光学性质的影响。当盐酸浓度从4.8增加到5.2 mol / L时,致密的规则纳米片倾向于垂直于基材表面生长,并且暴露的{001}面的百分比从76%增加到84%。这些纳米片阵列膜的发展伴随着光电子和光催化性能的显着变化。当更多比例的{001}面暴露时,拉曼峰E(g)在144 cm(-1)处的强度降低,并且光电流增加。盐酸浓度为4.8 mol / L制备的样品具有最高的光催化活性。这可以通过优先的载流子传输到TiO2晶体的不同面来实现,其中{101}和{001}面之间存在折衷关系,并且总催化位点增加。

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