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Dual plasmonic nanostructures for switching polarity of hot electron-induced photocurrent

机译:双电浆纳米结构转换极性的热电子光电流

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We report on the experimental investigation of polarity-switchable hot electron-induced photocurrents in dual-plasmonic nanostructures, consisting of two layers of gold nanoparticles (AuNPs) separated by a TiO(2)film. Hot electrons generated through the non-radiative decay of the localized surface plasmon resonances supported by the top and bottom layers of AuNPs can be simultaneously injected into the TiO(2)film in opposite directions and counteract each other. As a result, the polarity and magnitude of the net photocurrents can be tailored by controlling the population of hot electrons either generated from or collected by the two layers of AuNPs. We believe the wavelength-dependent photocurrent polarity switching could be useful for biosensors with a direct electrical readout and photoconversion applications.
机译:我们在实验的调查报告polarity-switchable热电子光电流dual-plasmonic纳米结构,金纳米粒子组成的两层(AuNPs)隔开TiO(2)电影。通过无辐射衰变产生的局部表面等离子体共振所支持顶部和底部层AuNPs同时注入TiO(2)电影相反的方向,相互抵消。因此,净的极性和大小可以定制通过控制光电流人口的电子产生的由两层AuNPs或收集。相信wavelength-dependent光电流极性切换可以用作生物传感器直接电读出和photoconversion应用程序。

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