Influence of The Substrate-Target Angle and Sputter Temperature On The Properties of CIGS Thin Films Sputtered From Single Quaternary Target

F. Keleş, Furkan Güçlüer
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引用次数: 0

Abstract

In this study, Copper Indium Gallium Selenide (CIGS) thin films were successfully sputtered from a single quaternary target onto soda lime glass substrates. The effect of the incident angle of target atoms and sputter temperature on the properties of the films were examined using various techniques. It was found that a higher incident angle of target atoms resulted in a columnar microstructure, while a lower angle produced a solid film. The columnar structure showed improved optical absorption compared to the solid film. The sputter temperature had a greater effect on the crystalline properties of the films, with all films except those sputtered at room temperature showing polycrystalline formation. The films displayed a chalcopyrite structure and acceptable band gaps in the range of 1.1-1.3 eV, regardless of the incident angle and sputter temperature. These results indicate that the optical properties of CIGS thin films can be improved by a small increase in the incident angle of target atoms, without adversely affecting the structural and crystalline properties.
衬底-靶角和溅射温度对单季元靶溅射CIGS薄膜性能的影响
在这项研究中,铜铟硒化镓(CIGS)薄膜成功地从单一的四元靶溅射到碱石灰玻璃衬底上。采用多种技术研究了靶原子入射角和溅射温度对薄膜性能的影响。结果表明,较高的入射角可形成柱状微结构,较低的入射角可形成固体薄膜。与固体薄膜相比,柱状结构具有更好的光吸收性能。溅射温度对薄膜的结晶性能影响较大,除室温溅射的薄膜外,其余薄膜均呈现多晶结构。无论入射角度和溅射温度如何,薄膜均呈现黄铜矿结构,带隙在1.1 ~ 1.3 eV范围内均可接受。这些结果表明,少量增加目标原子的入射角可以改善CIGS薄膜的光学性能,而不会对结构和晶体性能产生不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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