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Largely enhanced photocatalytic activity of Au/XS2/Au (X = Re, Mo) antenna-reactor hybrids: charge and energy transfer

机译:很大程度上提高光催化活性非盟/ XS2 /非盟antenna-reactor混合动力车(X =再保险,密苏里州):电荷和能量转移

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摘要

An antenna-reactor hybrid coupling plasmonic antenna with catalytic nanoparticles is a new strategy to optimize photocatalytic activity. Herein, we have rationally proposed a Au/XS2/Au (X = Re, Mo) antenna reactor, which has a large Au core as the antenna and small satellite Au nanoparticles as the reactor separated by an ultrathin two-dimensional transition-metal dichalcogenide XS2 shell (similar to 2.6 nm). Due to efficient charge transfer across the XS2 shell as well as energy transfer via coupling of the Au antenna and Au reactor, the photocatalytic activity has been largely enhanced: Au/ReS2/Au exhibits a 3.59-fold enhancement, whereas Au/MoS2/Au exhibits a 2.66-fold enhancement as compared to that of the sum of the three individual components. The different enhancement in the Au/ReS2/Au and Au/MoS2/Au antenna-reactor hybrid is related to the competition and cooperation of charge and energy transfer. These results indicate the great potential of the Au/XS2/Au antenna-reactor hybrid for the development of highly efficient plasmonic photocatalysts.
机译:一个antenna-reactor混合动力耦合电浆天线与催化纳米颗粒是一种新的策略优化光催化活性。理性,我们提出了一个非盟/ XS2 /非盟(X = Re,密苏里州)天线反应堆,一个大非盟的核心卫星天线和小盟纳米粒子作为反应堆的分开超薄二维过渡金属dichalcogenide XS2壳(类似于2.6海里)。全面有效的电荷转移XS2壳以及通过非盟的耦合能量转移天线和非盟反应堆,光催化活动在很大程度上增强:盟/它/非盟展览提高3.59倍,而盟/监理/非盟展览提高2.66倍比这三个的总和各个组件。在非盟/它/非盟和非盟/监理/非盟antenna-reactor混合竞争和有关合作的电荷和能量转移。结果显示的巨大潜力非盟/ XS2 /非盟antenna-reactor混合的开发高效的电浆论文的。

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