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Electrocatalytic glycerol oxidation enabled by surface plasmon polariton-induced hot carriers in Kretschmann configuration

机译:Electrocatalytic甘油氧化启用表面等离子体polariton-induced热运营商Kretschmann配置

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摘要

Plasmonic hot carrier generation has attracted increasing attention due to its ability to convert light to electrical energy. The generation of plasmon-induced hot carriers can be achieved via Landau damping in the non-radiative decay process of the plasmonic excitation energy. Localized surface plasmons (LSPs) undergo both radiative and non-radiative decays, while surface plasmon polaritons (SPPs) dissipate only via the non-radiative decay. Thus, it is a challenging task to exploit the surface plasmon polaritons for the efficient generation of hot carriers and their applications. In this study, a model hot-carrier-mediated electrocatalytic conversion system was demonstrated using an Au thin film in Kretschmann configuration, which is the representative platform to excite SPPs. AgPt-decorated Au nanobipyramids (AuNBPs) were designed and introduced onto the Au film, creating hot-spots to revolutionize the thin film-based photon-to-carrier conversion efficiency. The glycerol electro-oxidation reaction enabled by such SPP-induced hot carriers was evaluated and exhibited a photon-to-hot carrier conversion efficiency of 2.4 x 10(-3)%, which is similar to 2.5 times enhanced as compared to the efficiency based on the neat Au film.
机译:电浆热承运人代吸引了由于它能够越来越多的关注将光转化为电能。航空公司可以代plasmon-induced热实现通过朗道阻尼无辐射电浆的衰变过程激发的能量。局部表面等离子体激元(物流服务商)进行辐射和无辐射衰变,而表面等离子体极化声子(许可证)只有通过消散无辐射衰变。利用表面等离子体极化声子的任务运营商和有效代热他们的应用程序。hot-carrier-mediated electrocatalytic转换系统演示了使用一个非盟薄膜Kretschmann配置,这是代表平台激活许可证。AgPt-decorated盟nanobipyramids (AuNBPs)设计并介绍了在非盟的电影,创建热点来彻底改变瘦胶卷的photon-to-carrier转换效率。反应通过这样SPP-induced热运营商评估并展出photon-to-hot吗载体转换效率为2.4 x 10 (3) %,这类似于2.5倍增强相比效率基于整洁盟电影。

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