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Facile synthesis of Ag/ZnO metal-semiconductor hierarchical photocatalyst nanostructures via the galvanic-potential-enhanced hydrothermal method

机译:通过电催化 - 潜能 - 增强水热法,容易合成Ag / ZnO金属半导体分层光催化剂纳米结构

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摘要

Hierarchical metal-semiconductor nanostructures (NSs) composed of a backbone made of Ag nanowire and ZnO nanorod (NR) branches were successfully prepared using the galvanic-potential-enhanced hydrothermal method. A galvanic cell structure was formed between an Al bottle anode that was used as a hydrothermal reactor and an Ag NW cathode dispersed in a hydrothermal solution. As a result, the contact-potential-driven hydrothermal growth of the ZnO NRs on the sidewalls of the Ag NWs could be achieved. The morphological and microstructure characterization confirmed the formation of well-arranged hierarchical NSs composed of Ag NW trunk and ZnO NR branch structures. The photocatalytic properties of the hierarchical Ag/ZnO NSs were investigated by degrading methylene blue (MB) dye as a model pollutant. It was found that the hierarchical Ag/ZnO NSs demonstrated a more than two-fold faster degradation rate than the pristine ZnO NSs. The high-performance photocatalytic activity of the Ag/ZnO hierarchical NSs was attributed to the synergetic effect of the metallic Ag NWs and the ZnO NRs that enhanced the charge separation and diffusion by suppressing charge recombination, as well as enhanced reaction sites and light absorption.
机译:使用镀锌电位增强的水热法成功制备由由Ag纳米线和ZnO纳米棒(NR)分支制成的骨架组成的等级金属半导体纳米结构(NSS)。在Al瓶阳极之间形成电池结构,其用作水热反应器和分散在水热溶液中的Ag NW阴极之间。结果,可以实现ZnO NRS在AgNWS的侧壁上的接触电位驱动的水热生长。形态学和微观结构表征证实了由Ag NW Trunk和ZnO NR分支结构组成的布置良好的分层NSS的形成。通过将亚甲基蓝(MB)染料降解为模型污染物,研究了等级Ag / ZnO NSS的光催化性质。发现分层AG / ZnO NSS比原始ZnO NSS展示了超过两倍的降解率。 Ag / ZnO分层NSS的高性能光催化活性归因于金属Ag NWS和ZnO NRS通过抑制电荷重组来增强电荷分离和扩散的协同作用,以及增强的反应位点和光吸收。

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