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ZnO:Al films deposited by in-line reactive AC magnetron sputtering for a-Si:H thin film solar cells

机译:在线反应式交流磁控溅射沉积用于a-Si:H薄膜太阳能电池的ZnO:Al膜

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摘要

Throughout the last years strong efforts have been made to use aluminium doped zinc oxide (ZnO:Al) films on glass as substrates for amorphous or amorphous/microcrystalline silicon solar cells. The material promises better performance at low cost especially because ZnO:Al can be roughened in order to enhance the light scattering into the cell. Best optical and electrical properties are usually achieved by RF sputtering of ceramic targets. For this process deposition rates are low and the costs are comparatively high. Reactive sputtering from metallic Zn/Al compound targets offers higher rates and a comparable high film quality in respect to transmission and conductivity. In the presented work the process has been optimised to lead to high quality films as shown by reproducible cell efficiencies of around 9% initial for single junction amorphous silicon solar cells on commercial glass substrates. The crucial point for achieving high efficiencies is to know the dependency of the surface structure after the roughening step, which is usually performed in a wet etch, on the deposition parameters like oxygen partial pressure, aluminium content of the targets and temperature. The most important insights are discussed and the process of optimisation is presented.
机译:在过去的几年中,人们一直在努力使用玻璃上的铝掺杂氧化锌(ZnO:Al)薄膜作为非晶或非晶/微晶硅太阳能电池的基板。该材料有望以低成本提供更好的性能,特别是因为可以使ZnO:Al粗糙化,以增强进入电池的光散射。通常,通过陶瓷靶材的RF溅射可获得最佳的光学和电性能。对于该过程,沉积速率低并且成本相对较高。从金属Zn / Al化合物靶材进行反应性溅射可提供更高的传输速率,并在透射率和导电率方面具有可比的高薄膜质量。在提出的工作中,该工艺已经过优化,可生产出高质量的薄膜,如商用玻璃基板上单结非晶硅太阳能电池初始可再生电池效率约为9%所示。实现高效率的关键点是,要了解粗糙化步骤(通常在湿法蚀刻中执行)后的表面结构对沉积参数(如氧分压,靶材铝含量和温度)的依赖性。讨论了最重要的见解,并提出了优化过程。

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