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A generic strategy for preparation of TiO_2/Bi_xM_yO_z (M = W, Mo) heterojunctions with enhanced photocatalytic activities

机译:一种制备具有增强光催化活性的TiO_2 / Bi_xM_yO_z(M = W,Mo)异质结的通用策略

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Use of nanoscale TiO2/BixMyOz (M = W, Mo) heterojunctions is one of the most promising strategies for improving the photocatalytic efficiency. However, the controllable synthesis and morphology modification of these heterojunctions are still highly challenging. In this work, we developed a generic approach to hydrothermally synthesize TiO2/BixMyOz heterojunctions and tailor their morphologies. The key to this strategy is to intentionally utilize the surface defects of TiO2 as highly active sites to adsorb the intermediate hydrolysis-products, which is in marked contrast to the conventional direct precipitation methods. In the subsequent hydrothermal reactions, MO42- replaced the hydroxyl and nitrate radicals to form stable TiO2/BixMyOz heterojunctions, in which the second phase BixMyOz occupied the defect sites of TiO2 nanobelts. Under visible light irradiation, the photocatalytic reaction rate constant of TiO2/Bi2WO6 heterojunctions was four times higher than that of single phase Bi2WO6 nanosheets, while the photocatalytic reaction rate constant of TiO2/Bi3.64Mo0.36O6.55 heterojunctions exhibited a seven-fold increase compared with Bi3.64Mo0.36O6.55 nanopaticles. The substantial enhancement of photocatalytic activity is primarily ascribed to the matching energy band structure in the TiO2/BixMyOz heterojunctions, which is able to improve the separation efficiency of photo-generated electron-hole pairs and prolong the lifetime of charge carriers in the heterojunctions.
机译:纳米级TiO2 / BixMyOz(M = W,Mo)异质结的使用是提高光催化效率的最有希望的策略之一。然而,这些异质结的可控合成和形态修饰仍然极具挑战性。在这项工作中,我们开发了一种水热合成TiO2 / BixMyOz异质结并调整其形态的通用方法。该策略的关键是有意利用TiO2的表面缺陷作为高活性位点来吸附中间水解产物,这与常规的直接沉淀法形成鲜明对比。在随后的水热反应中,MO42-取代了羟基和硝酸根自由基,形成了稳定的TiO2 / BixMyOz异质结,其中第二相BixMyOz占据了TiO2纳米带的缺陷位。在可见光照射下,TiO2 / Bi2WO6异质结的光催化反应速率常数比单相Bi2WO6纳米片高四倍,而TiO2 / Bi3.64Mo0.36O6.55异质结的光催化反应速率常数增加了七倍。与Bi3.64Mo0.36O6.55纳米颗粒相比。 TiO2 / BixMyOz异质结中匹配的能带结构是光催化活性显着增强的原因,它能够提高光生电子-空穴对的分离效率并延长异质结中载流子的寿命。

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