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Impact on Thin Film Silicon Properties and Solar Cell Parameters of Texture Generated by LaserAnnealing and Chemical Etching of ZnO:Al

机译:ZnO XNO和ZnO化学蚀刻产生的薄膜硅质特性和太阳能电池参数的影响:Al

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The use of a laser annealing and chemical texturing process (dubbed the LaText process) on room-temperature sputtered ZnO:Al has been shown to generate unusually high haze properties, favorable for thin film silicon solar cells.This is due to the melting of the ZnO:Al layer by the XeCl laser, and the formation of crystalline domains onthe surface, for which the grains and grain boundaries are subsequently etched at different rates. The unusual surface morphology produced through this process can strongly impact the nature of the amorphous or microcrystalline silicon material deposited thereupon. In this paper, we report on results for amorphous silicon devices, for which the surface texture is seen to slightly impact thelight absorption in the material, but more interestingly, also the light-induced degradation of the cells.For co-deposited cells, devices deposited on surfaces with the characteristic "LaText" morphologyundergo a much lesser degradation. Furthermore, the decreased degree of degradation coincides with a notable shift in the Raman scattering peak. This provides a rapid diagnostic for testing multiple textures and deposition parameters.
机译:使用激光退火和化学纹理化工程(将胶乳过程称为胶乳处理)在室温溅射的ZnO:Al上显示出来产生异常高的雾度特性,良好的薄膜硅太阳能电池。这是由于熔化ZnO:Al层由Xecl激光,以及表面上的结晶结构域的形成,随后以不同的速率蚀刻晶粒和晶粒边界。通过该过程产生的不寻常的表面形态可以强烈影响沉积在其上的无定形或微晶硅材料的性质。在本文中,我们报告了非晶硅器件的结果,其表面纹理被视为略微影响材料的吸收,但更有趣的是细胞的光引起的降解。对于共沉积的细胞,装置沉积在具有特征“LaTex”的表面上的表面上较小的劣化。此外,降低降低程度与拉曼散射峰的显着偏移一致。这提供了用于测试多个纹理和沉积参数的快速诊断。

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