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Efficiency enhancement of non-selenized Cu(InGa)Se2 solar cells employing scalable low-cost antireflective coating

机译:采用可扩展的低成本减反射涂层提高非硒化Cu(InGa)Se2太阳能电池的效率

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摘要

In this study, a non-selenized CuInGaSe2 (CIGS) solar device with textured zinc oxide (ZnO) antireflection coatings was studied. The ZnO nanostructure was fabricated by a low-temperature aqueous solution deposition method. With controlling the morphology of the solution-grown tapered ZnO nanorod coatings, the average reflectance of the CIGS solar device decreased from 8.6% to 2.1%, and the energy conversion efficiency increased from 9.1% to 11.1%. The performance improvement in the CuInGaSe2 thin-film solar cell was well explained due to the gradual increase of the refractive index between air and the top electrode of solar cell device by the insertion of the ZnO nanostructure. The results demonstrate a potential application of the ZnO nanostructure array for efficient solar device technology.
机译:在这项研究中,研究了带纹理氧化锌(ZnO)减反射涂层的非硒化CuInGaSe2(CIGS)太阳能器件。 ZnO纳米结构是通过低温水溶液沉积法制造的。通过控制溶液生长的锥形ZnO纳米棒涂层的形貌,CIGS太阳能器件的平均反射率从8.6%降低到2.1%,能量转换效率从9.1%增加到11.1%。由于通过插入ZnO纳米结构,空气与太阳能电池器件顶部电极之间的折射率逐渐增加,很好地解释了CuInGaSe2薄膜太阳能电池的性能改进。结果证明了ZnO纳米结构阵列在高效太阳能器件技术中的潜在应用。

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