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Improving the efficiency of copper indium gallium (Di-)selenide (CIGS) solar cells through integration of a moth-eye textured resist with a refractive index similar to aluminum doped zinc oxide

机译:通过集成具有类似于铝掺杂氧化锌的折射率的蛾眼纹理抗蚀剂,提高铜铟镓硒化(CIGS)太阳能电池的效率

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Textured transparent conductors are widely used in thin-film silicon solar cells. They lower the reflectivity at interfaces between different layers in the cell and/or cause an increase in the path length of photons in the Si absorber layer, which both result in an increase in the number of absorbed photons and, consequently, an increase in short-circuit current density (Jsc ) and cell efficiency. Through optical simulations, we recently obtained strong indications that texturing of the transparent conductor in copper indium gallium (di-)selenide (CIGS) solar cells is also optically advantageous. Here, we experimentally demonstrate that the Jsc and efficiency of CIGS solar cells with an absorber layer thickness (dCIGS ) of 0.85 μm, 1.00 μm and 2.00 μm increase through application of a moth-eye textured resist with a refractive index that is sufficiently similar to AZO (nresist = 1.792 vs. nAZO = 1.913?at 633 nm) to avoid large optical losses at the resist-AZO interface. On average, Jsc increases by 7.2%, which matches the average reduction in reflection of 7.0%. The average relative increase in efficiency is slightly lower (6.0%). No trend towards a larger relative increase in Jsc with decreasing dCIGS was observed. Ergo, the increase in Jsc can be fully explained by the reduction in reflection, and we did not observe any increase in Jsc based on an increased photon path length.
机译:带纹理的透明导体广泛用于薄膜硅太阳能电池。它们降低了电池中不同层之间的界面处的反射率,并且/或者导致了Si吸收层中光子的路径长度增加,这两者都导致吸收的光子数量增加,因此,短路时间增加了。 -电路电流密度(Jsc)和电池效率。通过光学模拟,我们最近获得了强有力的迹象,表明在铜铟镓硒(CIGS)太阳能电池中透明导体的纹理化在光学上也是有利的。在这里,我们通过实验证明,通过使用折射率足以与之相似的蛾眼纹理抗蚀剂,吸收层厚度(dCIGS)为0.85μm,1.00μm和2.00μm的CIGS太阳能电池的Jsc和效率提高AZO(在633 nm处nresist = 1.792 vs. nAZO = 1.913?),以避免在resist-AZO界面处产生较大的光损耗。平均而言,Jsc增加7.2%,与反射的平均减少7.0%相匹配。效率的平均相对增长略低(6.0%)。没有观察到随着dCIGS的降低,Jsc的相对增加更大的趋势。因此,Jsc的增加可以通过反射的减少来完全解释,我们没有观察到由于光子路径长度增加而导致的Jsc的增加。

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