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Surface-Plasmon-Enhanced Band Emission and Enhanced Photocatalytic Activity of Au Nanoparticles-Decorated ZnO Nanorods

机译:金纳米粒子修饰的ZnO纳米棒的表面等离子体增强能带发射和增强的光催化活性

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We reported a simple hydrothermal method to fabricate Au nanoparticles-decorated ZnO nanorods (ZnO-NRs) using aligned ZnO-NRs arrays as a template. Via changing the concentration of HAuCl4 aqueous solution, the size and density of Au nanoparticles (NPs) on the surface of ZnO-NRs could be readily tuned. The photoluminescence of Au-NPs decorated ZnO-NRs were investigated, in order to optimize the configuration of the Au-NPs decorated ZnO-NRs system realizing the maximum band emission. Due to a synergistic effect of the adjacent Au NPs and ZnO-NRs and efficiently coupled localized surface plasmon resonance (SPR) excitation, an optimized sample employing Au NPs with 15-nm size showed best catalytic efficiency. We have proposed a mechanism that is the electron transfer from surface-plasmon-stimulated Au NPs to the conduction band of ZnO-NRs. These results demonstrate that Au NPs can significantly enhance the charge separation by extracting electrons from the photoexcited ZnO and consequently improve the photocatalytic activity of the composites.
机译:我们报告了一种简单的水热方法,以对齐的ZnO-NRs阵列为模板来制作Au纳米粒子装饰的ZnO纳米棒(ZnO-NRs)。通过改变HAuCl4水溶液的浓度,可以很容易地调节ZnO-NRs表面上的Au纳米颗粒(NPs)的大小和密度。研究了Au-NPs修饰的ZnO-NRs的光致发光,以优化Au-NPs修饰的ZnO-NRs系统的结构,实现了最大的能带发射。由于相邻Au NP和ZnO-NR的协同作用以及有效耦合的局部表面等离子体共振(SPR)激发,采用15 nm尺寸Au NP的优化样品显示出最佳的催化效率。我们提出了一种机制,即电子从表面等离激元激发的 Au NP传递到ZnO-NRs的导带。这些结果表明,Au NPs可通过从光激发的ZnO中提取电子来显着增强电荷分离,从而提高复合材料的光催化活性。

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