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Tandem-structured hot electron based photovoltaic cell with double Schottky barriers

机译:具有双肖特基势垒的串联结构热电子基光伏电池

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摘要

We demonstrate a tandem-structured, hot electron based photovoltaic cell with double Schottky barriers. The tandem-structured, hot electron based photovoltaic cell is composed of two metal/semiconductor interfaces. Two types of tandem cells were fabricated using TiO2/Au/Si and TiO2/Au/TiO2, and photocurrent enhancement was detected. The double Schottky barriers lead to an additional pathway for harvesting hot electrons, which is enhanced through multiple reflections between the two barriers with different energy ranges. In addition, light absorption is improved by the band-to-band excitation of both semiconductors with different band gaps. Short-circuit current and energy conversion efficiency of the tandem-structured TiO2/Au/Si increased by 86% and 70%, respectively, compared with Au/Si metal/semiconductor nanodiodes, showing an overall solar energy conversion efficiency of 5.3%.
机译:我们演示了具有双肖特基势垒的串联结构,基于热电子的光伏电池。串联结构,基于热电子的光伏电池由两个金属/半导体界面组成。使用TiO2 / Au / Si和TiO2 / Au / TiO2制备了两种类型的串联电池,并检测了光电流增强。双重肖特基势垒导致获取热电子的另一条途径,这是通过两个能级不同的势垒之间的多次反射而增强的。另外,通过具有不同带隙的两个半导体的带间激发来改善光吸收。与Au / Si金属/半导体纳米二极管相比,串联结构的TiO2 / Au / Si的短路电流和能量转换效率分别提高了86%和70%,显示总的太阳能转换效率为5.3%。

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