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Controllable assembly of well-defined monodisperse Au nanoparticles on hierarchical ZnO microspheres for enhanced visible-light-driven photocatalytic and antibacterial activity

机译:定义良好的单分散的可控组装非盟对分层氧化锌纳米微球为增强visible-light-driven光催化和抗菌活性

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摘要

A high-efficiency visible-light-driven photocatalyst composed of homogeneously distributed Au nanoparticles (AuNPs) well-defined on hierarchical ZnO microspheres (ZMS) via a controllable layer-by-layer self-assembly technique is demonstrated. The gradual growth of the characteristic absorption bands of Au loaded on ZnO in the visible light region with an increasing number of assemblies indicates the enhancement of the light harvesting ability of the ZMS/Au composites as well as the reproducibility and controllability of the entire assembly process. Results on the photoelectrochemical performance characterized by EIS and transient photocurrent response spectra indicate that the ZMS/Au composites possess increased photoinduced charge separation and transfer efficiency compared to the pure ZMS film. As a result, the hybrid composites exhibited enhanced decomposition activity for methylene blue and salicylic acid as well as antibacterial activity in killing S. aureus and E. coli under visible light irradiation. It can be noted that well-distributed Au components even at a rather low Au/ZnO weight ratio of similar to 1.2% also exhibited extraordinary photocatalysis. Such a facile and controllable self-assembly approach may be viable for preparing high-performance visible-light-driven ZMS/Au photocatalysts in a simple and controllable way, and consequently, the technology may extend to other plasmon-enhanced heterostructures made of nanostructured semiconductors and noble metals for great potential application in environmental protection.
机译:一个高效visible-light-driven光催化剂组成的均匀分布式Au纳米颗粒(AuNPs)定义的通过一个等级氧化锌微球(zm评选)可控逐层自组装技术演示。非盟的特征吸收带在可见光区域的氧化锌越来越多的组件表示光吸收能力的增强zm评选/金复合材料以及整个的再现性和可控性装配过程。光电化学性能的特点EIS和瞬态光电流响应谱zm评选/金复合材料具备显示光诱导电荷分离和增加传输效率比纯zm评选电影。表现出增强分解活动亚甲蓝和水杨酸在杀死金黄色葡萄球菌和抗菌活性可见光照射下大肠杆菌。注意,即使均匀盟组件在一个相当低的非盟/氧化锌重量的比例相似1.2%也表现出了非凡的光催化作用。这样一个简单和可控自组装方法可能可行的准备高性能visible-light-driven zm评选/非盟论文在一个简单的和可控的方式,因此,这项技术可能扩展到其他plasmon-enhanced异质结构纳米半导体和高贵的金属巨大的潜力应用环境保护。

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