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Cu(In,Ga)Se_2 solar cells and mini-modules fabricated on thin soda-lime glass substrates

机译:在薄钠钙玻璃基板上制造的Cu(In,Ga)Se_2太阳能电池和微型模块

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摘要

In this paper, we report a recent progress in Cu(In,Ga)Se_2 (CIGS) solar cells and mini-modules demonstrated on soda-lime glass (SLG) substrates, which are one of the most common and cost effective substrate materials for chalcopyrite photovoltaics. CIGS absorber layers grown by the three-stage co-evaporation process was used with an optimized [Se]/[metal] flux ratio and preferable substrate temperatures for SLG substrate thicknesses. SLG substrates of 0.28-1.1 mm in thickness, which are thinner than that generally used in laboratories and industries (~2-3 mm), were employed to develop techniques for further reductions of material cost and module weight. Solar cell and mini-module efficiencies of >19% and >17%, respectively, with relatively high open circuit voltages (V_(oc)) and fill factors (FF) (V_(oc) 0.77 V and FF 0.79 for cells, and V_(oc) 0.77 V and FF 0.74 for mini-modules) were demonstrated using a composition ratio [Ga]/([In]+[Ga]) of 0.45 for the CIGS absorber layers. Key techniques and future directions toward highly efficient CIGS solar cells and modules with high values of V_(oc) and FF are discussed.
机译:在本文中,我们报告了在钠钙玻璃(SLG)衬底上展示的Cu(In,Ga)Se_2(CIGS)太阳能电池和微型模块的最新进展,这些衬底是最常见且成本效益最高的衬底材料之一。黄铜矿光伏。使用通过三阶段共蒸发工艺生长的CIGS吸收层,具有优化的[Se] / [金属]通量比和SLG基板厚度的最佳基板温度。厚度为0.28-1.1毫米的SLG基板比实验室和工业中通常使用的基板厚度薄(约2-3毫米),被用于开发进一步降低材料成本和模块重量的技术。具有相对较高的开路电压(V_(oc))和填充因子(FF)(电池的V_(oc)0.77 V和FF 0.79)的太阳能电池和微型模块效率分别> 19%和> 17%对于CIGS吸收层,使用0.45的组成比[Ga] /([In] + [Ga]),证明了V_(oc)为0.77 V,微型模块为FF 0.74)。讨论了关键技术以及具有高V_(oc)和FF值的高效CIGS太阳能电池和组件的发展方向。

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