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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Plasmonic-enhanced self-cleaning activity on asymmetric Ag/ZnO surface-enhanced Raman scattering substrates under UV and visible light irradiation
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Plasmonic-enhanced self-cleaning activity on asymmetric Ag/ZnO surface-enhanced Raman scattering substrates under UV and visible light irradiation

机译:在紫外线和可见光照射下,对不对称Ag / ZnO表面增强拉曼散射基板上的等离子体增强的自清洁活性

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摘要

Two different asymmetric Ag/ZnO composite nanoarrays were fabricated. These nanoarrays are proposed as highly sensitive and uniform surface-enhanced Raman scattering (SERS) substrates with plasmonic-enhanced UV-visible photocatalytic properties for self-cleaning. The asymmetric nanostructures are composed of Ag nanoparticles hanging inside or capping on the top of ZnO hollow nanospheres, which allows the generation of a strong local electric field near the contact area owing to the asymmetric dielectric environment. Experimental and simulation results showed that these asymmetric structures are favorable for achieving high photocatalytic activity under UV and visible light irradiation, in addition to improving the SERS performance. The electron transfer model based on band gap alignment was employed to further illustrate the mechanisms of the photocatalytic activity, which was dependent on the wavelength of the irradiation. Given the dramatically improved photocatalytic performance, together with the reproducible and uniform SERS signals verified by the Raman mapping results, the large area ordered asymmetric metal/semiconductor nanoarrays have been demonstrated to be suitable for further applications in multifunctional photoelectrochemical chips.
机译:制备了两种不同的不对称Ag / ZnO复合纳米阵列。这些纳米阵列被提议为具有自清洁的等离激元增强的UV-可见光催化特性的高度敏感且均匀的表面增强拉曼散射(SERS)基底。不对称的纳米结构由悬挂在内部或盖在ZnO空心纳米球顶部的Ag纳米颗粒组成,由于不对称的介电环境,它允许在接触区域附近产生强大的局部电场。实验和模拟结果表明,这些不对称结构除了改善SERS性能外,还有利于在紫外线和可见光照射下实现高光催化活性。基于带隙排列的电子转移模型被用来进一步说明光催化活性的机理,该机理取决于照射的波长。考虑到光催化性能的显着改善,以及通过拉曼映射结果验证的可再现且均匀的SERS信号,已证明大面积有序不对称金属/半导体纳米阵列适用于多功能光电化学芯片中的进一步应用。

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