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Effect of film thickness and evaporation rate on co-evaporated SnSe thin films for photovoltaic applications

机译:薄膜厚度和蒸发速率对光伏应用共同蒸发的SNSE薄膜的影响

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SnSe thin films were deposited by a co-evaporation method with different film thicknesses and evaporation rates. A device with a structure of soda-lime glass/Mo/SnSe/CdS/i-ZnO/ITO/Ni/Al was fabricated. Device efficiency was improved from 0.18% to 1.02% by a film thickness of 1.3 μm and evaporation rate of 2.5 ? S ~(?1) via augmentation of short-circuit current density and open-circuit voltage. Properties (electrical, optical, structural) and scanning electron microscopy measurements were compared for samples. A SnSe thin-film solar cell prepared with a film thickness of 1.3 μm and evaporation rate of 2.5 ? S ~(?1) had the highest electron mobility, better crystalline properties, and larger grain size compared with the other solar cells prepared. These data can be used to guide growth of high-quality SnSe thin films, and contribute to development of efficient SnSe thin-film solar cells using an evaporation-based method.
机译:通过具有不同膜厚度和蒸发速率的共蒸发方法沉积SNSE薄膜。制造具有钠钙玻璃/ MO / SNSE / CDS / I-ZnO / ITO / Ni / Al结构的装置的装置。通过薄膜厚度为1.3μm的薄膜厚度和2.5的蒸发速率提高了0.18%至1.02%。 S〜(?1)通过增强短路电流密度和开路电压。比较物理(电气,光学,结构)和扫描电子显微镜测量以进行样品。使用1.3μm的膜厚度和2.5的蒸发速率制备的SNSE薄膜太阳能电池。与制备的其他太阳能电池相比,S〜(α1)具有最高的电子迁移率,更好的结晶性能和较大的晶粒尺寸。这些数据可用于引导高质量的SNSE薄膜的生长,并使用基于蒸发的方法促进高效的SNSE薄膜太阳能电池的开发。

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