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Reactivity of Monolayer-Protected Gold Nanoclusters at Dye-Sensitized Liquid/Liquid Interfaces

机译:染料敏化的液/液界面上单分子保护的金纳米团簇的反应性

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摘要

Hexanethiolate monolayer-protected gold nanoclusters (MPCs) were used as redox quenchers at the polarizable water/1,2-dichloroethane (DCE) interface. Photocurrent responses originating from the heterogeneous quenching of photoexcited water soluble porphyrin complexes by MPCs dissolved in the DCE phase were observed. As MPCs can function as both electron acceptors and donors, the photocurrent results from the superposition of two simultaneous processes, which correspond to the oxidation and reduction of MPCs. The magnitude of the net photocurrent is essentially determined by the balance of the kinetics of these two processes, which can be controlled by tuning the Galvani potential difference between the two phases. We show that, within the available potential window, the apparent electron-transfer rate constants follow classical Butler−Volmer dependence on the applied potential difference.
机译:己硫醇盐单层保护的金纳米簇(MPC)在可极化水/ 1,2-二氯乙烷(DCE)界面处用作氧化还原猝灭剂。观察到由溶解在DCE相中的MPC对光激发水溶性卟啉复合物进行异质淬灭而产生的光电流响应。由于MPC既可以充当电子受体也可以充当施主,因此光电流是由两个同时进行的过程叠加而成的,这两个过程对应于MPC的氧化和还原。净光电流的大小基本上由这两个过程的动力学平衡决定,可以通过调整两相之间的Galvani电势差来控制。我们表明,在可用电势窗口内,视在电子传输速率常数遵循经典的Butler-Volmer依赖于所施加的电势差。

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