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首页> 外文期刊>Nanoscale >Asymmetric synthesis of Au-CdSe core-semishell nanorods for plasmon-enhanced visible-light-driven hydrogen evolution
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Asymmetric synthesis of Au-CdSe core-semishell nanorods for plasmon-enhanced visible-light-driven hydrogen evolution

机译:不对称合成的Au-CdSe core-semishell纳米棒的plasmon-enhancedvisible-light-driven氢进化

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摘要

The metal-semiconductor heterostructure is an important candidate for photocatalysis due to its efficient charge transport and separation. A controllable morphology and ideal interfaces are critically significant for improving the heterostructure photocatalytic performance. By controlling the concentration of Cd2+ to control the reaction environment (pH value) and reaction rate, the CdSe nanocrystal is overgrown on the side or tip of the Au nanorods, which leads to a strong interaction between the excitons of CdSe nanocrystals and the plasmons of Au nanorods. Both kinds of Au-CdSe heterorods exhibit good hydrogen productivity. Particularly, the lateral Au-CdSe heterorods exhibit excellent photocatalytic efficiency due to the larger contact interface of Au and CdSe and the strong local field of the CdSe nanocrystals grown on one side of the Au nanorods being enhanced by the transverse plasmon resonance in the visible region. We provide an approach to modulate the combination of the asymmetric metal nanoparticle and the semiconductor shell; these core-semishell heterostructures have potential applications ranging from photocatalysis to photonic nanodevices.
机译:金属半导体异质结构是一个由于其光催化的重要候选人有效的电荷传输和分离。可控形态和理想的接口对于提高至关重要异质结光催化性能。控制Cd2 +的浓度来控制(pH值)和反应的反应环境率、CdSe纳米晶体是杂草丛生非盟纳米棒和小费的副作用,导致强烈的CdSe激子间的相互作用纳米晶体和非盟的等离子体激元纳米棒。两种Au-CdSe heterorods展览很好氢效率。Au-CdSe heterorods展览优秀的由于更大的光催化效率盟和CdSe接触界面和强大当地的CdSe纳米晶体生长增强的金纳米棒可见横向等离子体共振地区。不对称的金属纳米颗粒的组合和半导体层;异质结构有潜在的应用从光催化光子nanodevices。

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