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High deposition rate aluminium-doped zinc oxide films with highly efficient light trapping for silicon thin film solar cells

机译:用于硅薄膜太阳能电池的高沉积速率的高掺杂铝掺杂氧化锌膜和高效光阱

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摘要

Aluminium-doped zinc oxide films were deposited on glass substrates at high rates by reactive mid-frequency sputtering. The in-line sputter system allows oxygen influx along the middle and sides of a dual-cathode system. The effect of varying the oxygen flow from the sides on the electrical and optical properties together with the surface morphology after wet chemical etching was investigated. Increasing the amount of oxygen flow from the sides improved the resistivity profile of static prints and gave highly conductive and transparent films in dynamic deposition mode. The etched films developed rough surface textures with effective light scattering that could be controlled by the oxygen balance between the middle and sides. Optimally textured films were used as front contacts in 1 cm~2 single junction microcrystalline solar cells yielding an initial efficiency of 8.4%. The improvement in light trapping led to short circuit densities higher than that of the reference solar cells.
机译:通过反应中频溅射将铝掺杂的氧化锌膜高速率沉积在玻璃基板上。在线溅射系统允许氧气沿着双阴极系统的中部和侧面流入。研究了从侧面改变氧气流对电学和光学性能以及湿法化学蚀刻后的表面形态的影响。增加从侧面流动的氧气量可改善静态印刷的电阻率曲线,并在动态沉积模式下获得高导电性和透明性的薄膜。蚀刻后的薄膜表面粗糙,具有有效的光散射,可以通过中部和两侧之间的氧平衡来控制。最佳纹理化薄膜用作1 cm〜2单结微晶太阳能电池的正面触点,初始效率为8.4%。光捕获的改进导致短路密度高于参考太阳能电池的短路密度。

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