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ZnO/CdTe/CuSCN, a promising heterostructure to act as inorganic eta-solar cell

机译:ZnO / CdTe / CuSCN,一种有望用作无机eta太阳电池的异质结构

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The ZnO/CdTe/CuSCN heterostructure was analyzed as a candidate to act as an inorganic eta-solar cell. A ZnO film consisting of single crystal nanocolumns was electrodeposited on a transparent conducting substrate which acts as n-type material. As absorber material we used CdTe, which was deposited on the ZnO columnar film by Metal Organic Chemical Vapor Deposition. In order to complete the eta-solar cell we deposited a CuSCN layer by chemical solution deposition. A conformal and uniform CdTe coverage of the ZnO columns was achieved, producing a very efficient light trapping effect. The effective absorption (~87%) and effective reflectance (~10%) of the complete heterostructure in the 400-800 nm (AM1.5) solar spectrum range are very favorable for the use of this heterostructure in photovoltaic devices. Preliminary current-voltage characterization made on this ZnO/CdTe/CuSCN heterostructure shows rectifying behavior and a photovoltaic effect.
机译:ZnO / CdTe / CuSCN异质结构被分析为充当无机eta太阳电池的候选材料。将由单晶纳米柱组成的ZnO膜电沉积在充当n型材料的透明导电基板上。作为吸收材料,我们使用了CdTe,它通过金属有机化学气相沉积法沉积在ZnO柱状膜上。为了完成eta太阳电池,我们通过化学溶液沉积法沉积了CuSCN层。 ZnO柱的CdTe的保形和均匀覆盖得以实现,从而产生了非常有效的光捕获效果。在400-800 nm(AM1.5)太阳光谱范围内,完整异质结构的有效吸收(〜87%)和有效反射率(〜10%)对于在光电器件中使用该异质结构非常有利。对此ZnO / CdTe / CuSCN异质结构进行的初步电流-电压表征显示出整流行为和光伏效应。

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