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首页> 外文期刊>Journal of Colloid and Interface Science >Integrating the Z-scheme heterojunction into a novel Ag2O@rGO@reduced TiO2 photocatalyst: Broadened light absorption and accelerated charge separation co-mediated highly efficient UV/visible/NIR light photocatalysis
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Integrating the Z-scheme heterojunction into a novel Ag2O@rGO@reduced TiO2 photocatalyst: Broadened light absorption and accelerated charge separation co-mediated highly efficient UV/visible/NIR light photocatalysis

机译:将Z-Schement异质结集成到新型Ag2O @ Rgo @降低TiO 2光催化剂中:扩大光吸收和加速电荷分离共同介导的高效紫外/可见/ NIR光催化

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摘要

A photocatalyst with good electron-transfer property and wide spectrum response is of great interest. Herein, visible/NIR-light-driven Ag2O nanoparticles (NPs) and UV/visible-responsive reduced TiO2 nanosheets (TiO2-x NSs) anchored onto reduced graphene oxide (rGO) forming Ag2O@rGO@TiO2-x composites are synthesized in this study. The as-synthesized Ag2O@rGO@TiO2-x composites exhibit a superior full solar spectrum (UV, visible and NIR) response, showing their potential for effective use of solar energy. Compared to single component (TiO2 NSs and Ag2O NPs) or binary composites (Ag2O@TiO2), Ag2O@rGO@TiO2-x ternary composite has exhibited improved photocatalytic activity under UV, visible, NIR and nature sunlight irradiation and excellent photostability. The outstanding photocatalytic performance of Ag2O@rGO@TiO2-x composites depends on three sides: firstly, synergistic effect among the reduced TiO2, Ag2O, and rGO improves the wide spectrum response ability; Secondly, Ag2O@rGO@TiO2-x builds a 2-scheme structure, which promotes the separation of electron/hole pairs and retains prominent redox ability; Thirdly, the electrons of Ag2O are transferred to rGO to suppress the photo-corrosion of Ag2O during the photocatalytic process and the stability of Ag2O@rGO@TiO2-x composite has been enhanced greatly. (C) 2018 Elsevier Inc. All rights reserved.
机译:具有良好电子转移性的光催化剂和广谱响应的广泛兴趣。在此,合成了本文,在此,可见/ NIR-光驱动的Ag2O纳米颗粒(NPS)和UV /可见响应的减少的锚固到石墨烯氧化物(RGO)上的氧化铟烯氧化物(RGO)@ TiO2-X复合材料上的α-α学习。 AS合成的AG2O @ RGO @ TiO2-X复合材料表现出优异的全太阳光谱(UV,可见和NIR)响应,显示其有效利用太阳能的潜力。与单组分(TiO2 NSS和Ag2O NPS)或二元复合材料(Ag2O @ TiO 2)相比,Ag2O @ Rgo @ TiO2-X三元复合材料在UV,可见,NIR和Nature Sunlight辐照下表现出改善的光催化活性和优异的光稳定性。 Ag2O @ rgo @ TiO2-X复合材料的出色光催化性能取决于三个边:首先,减少TiO2,Ag2O和Rgo之间的协同效应提高了广泛的频谱反应能力;其次,AG2O @ Rgo @ TiO2-X构建了一个2方案结构,促进了电子/孔对的分离并保留了突出的氧化还原能力;第三,Ag2O的电子转移到RGO,以抑制在光催化过程中Ag2O的光腐蚀,并且Ag2O @ Rgo @ TiO2-X复合材料的稳定性得到了大大提高。 (c)2018 Elsevier Inc.保留所有权利。

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