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Construction of Heterostructured g-C3N4/Ag/TiO2 Microspheres with Enhanced Photocatalysis Performance under Visible-Light Irradiation

机译:可见光辐射下具有增强光催化性能的异质结构g-C3N4 / Ag / TiO2微球的构建

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The visible-light photocatalytic performance of the heterostructured g-C3N4/Ag/TiO2 microspheres was investigated. As an electron-conduction bridge, Ag nanoparticles were photodeposited as the interlayer between g-C3N4 and the surface of TiO2 microspheres to increase visible-light absorption via the surface plasmon resonance. The interface between Ag/ TiO2 and g-C3N4 facilitates the direct migration of photoinduced electrons from g-C3N4 to Ag/TiO2, which is conductive to retarding the recombination of electron-holes. The g-C3N4 (4%)/Ag/TiO2 microsphere sample shows significant photocatalytic activity, higher than the sum of g-C3N4 (1.2 mg) and Ag/TiO2 samples, or the sum of TiO2 and Ag/g-C3N4 (1.8 mg) samples. It indicates that the heterostructured combination of g-C3N4, Ag and TiO2 microspheres provides synergistic photocatalytic activity through an efficient electron transfer process.
机译:研究了异结构g-C3N4 / Ag / TiO2微球的可见光催化性能。作为电子传导桥,Ag纳米颗粒被光沉积为g-C3N4与TiO2微球表面之间的中间层,以通过表面等离振子共振增加可见光吸收。 Ag / TiO2和g-C3N4之间的界面促进了光致电子从g-C3N4到Ag / TiO2的直接迁移,这有助于阻止电子-空穴的复合。 g-C3N4(4%)/ Ag / TiO2微球样品显示出显着的光催化活性,高于g-C3N4(1.2 mg)和Ag / TiO2样品的总和,或TiO2和Ag / g-C3N4的总和(1.8毫克)样品。这表明g-C3N4,Ag和TiO2微球的异质结构组合通过有效的电子转移过程提供了协同的光催化活性。

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