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A chemical bath deposition route to facet-controlled Ag3PO4 thin films with improved visible light photocatalytic activity

机译:化学浴沉积途径制得的面控Ag3PO4薄膜具有改善的可见光光催化活性

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摘要

A facile, economic, and reproducible chemical bath deposition (CBD) method is developed for the fabrication of facet-controlled Ag3PO4 thin films with enhanced visible light photocatalytic activity. The fine control of bath temperature, precursor, complexing agent, substrate, and solution pH is fairly crucial in preparing the facet-selective thin film of Ag3PO4 nanocrystal. The change of precursor from silver nitrate to silver acetate makes possible the tailoring of the crystal shape of Ag3PO4 from cube to rhombic dodecahedron and also the bandgap tuning of the deposited films. The control of [Ag+]/[phosphate] ratio enables to maximize the loading amount of Ag3PO4 crystals per the unit area of the deposited film. All the fabricated Ag3PO4 thin films show high photocatalytic activity for visible light-induced degradation of organic molecules, which can be optimized by tailoring the crystal shape of the deposited crystals. This CBD method is also useful in preparing the facet-controlled hybrid film of Ag3PO4-ZnO photocatalyst. The present study clearly demonstrates the usefulness of the present CBD method for fabricating facet controlled thin films of metal oxosalt and its nanohybrid. (C) 2016 Published by Elsevier Inc.
机译:开发了一种简便,经济且可重现的化学浴沉积(CBD)方法,用于制造具有增强的可见光光催化活性的受面控制的Ag3PO4薄膜。浴温,前驱体,络合剂,底物和溶液pH的精细控制对于制备Ag3PO4纳米晶的面选择性薄膜至关重要。前体从硝酸银到乙酸银的变化使得将Ag3PO4的晶体形状从立方体变为菱形十二面体成为可能,并且还可以对沉积薄膜进行带隙调节。通过控制[Ag +] / [磷酸盐]的比例,可以使每单位沉积膜面积的Ag3PO4晶体的负载量最大化。所有制造的Ag3PO4薄膜均对可见光诱导的有机分子降解显示出高光催化活性,可以通过调整沉积晶体的晶体形状来优化该活性。此CBD方法还可用于制备Ag3PO4-ZnO光催化剂的受面控制的杂化膜。本研究清楚地证明了本CBD方法在制备含金属的草酸盐及其纳米杂化物的面控制薄膜中的有用性。 (C)2016由Elsevier Inc.发布

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