Bifacial flexible CIGS thin-film solar cells with nonlinearly graded-bandgap photon-absorbing layers

Faiz Ahmad, P. Monk, A. Lakhtakia
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Abstract

The building sector accounts for 36% of energy consumption and 39% of energy-related greenhouse-gas emissions. Integrating bifacial photovoltaic solar cells in buildings could significantly reduce energy consumption and related greenhouse gas emissions. Bifacial solar cells should be flexible, bifacially balanced for electricity production, and perform reasonably well under weak-light conditions. Using rigorous optoelectronic simulation software and the differential evolution algorithm, we optimized symmetric/asymmetric bifacial CIGS solar cells with either (i) homogeneous or (ii) graded-bandgap photon-absorbing layers and a flexible central contact layer of aluminum-doped zinc oxide to harvest light outdoors as well as indoors. Indoor light was modeled as a fraction of the standard sunlight. Also, we computed the weak-light responses of the CIGS solar cells using LED illumination of different light intensities. The optimal bifacial CIGS solar cell with graded-bandgap photon-absorbing layers is predicted to perform with 18–29% efficiency under 0.01– 1.0-sun illumination; furthermore, efficiencies of 26.08% and 28.30% under weak LED light illumination of 0.0964 mW cm^{-2} and 0.22 mW cm^{-2} intensities, respectively, are predicted.
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具有非线性渐变带隙光子吸收层的双面柔性 CIGS 薄膜太阳能电池
建筑行业占能源消耗的 36%,占能源相关温室气体排放的 39%。在建筑物中集成双面光伏太阳能电池可以大大减少能源消耗和相关的温室气体排放。双面太阳能电池应具有灵活性、双面平衡发电,并在弱光条件下具有良好的性能。利用严格的光电模拟软件和微分演化算法,我们对对称/非对称双面 CIGS 太阳能电池进行了优化,这些电池具有 (i) 均质或 (ii) 梯度带隙光子吸收层和柔性掺铝氧化锌中央接触层,既可在室外采光,也可在室内采光。室内光被模拟为标准太阳光的一部分。此外,我们还利用不同光强的 LED 照明计算了 CIGS 太阳能电池的弱光响应。根据预测,在 0.01-1.0 太阳光照射下,具有梯度带隙光子吸收层的最佳双面 CIGS 太阳能电池的效率为 18-29%;此外,在 0.0964 mW cm^{-2} 和 0.22 mW cm^{-2} 强度的 LED 弱光照射下,效率分别为 26.08% 和 28.30%。
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