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New Earth-Abundant Thin Film Solar Cells Based On Chalcogenides

机译:基于硫属化物的新型地球富集薄膜太阳能电池

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At the end of 2017 roughly 1.8% of the worldwide electricity came from solar photovoltaics (PV), which is foreseen to have a key role in all major future energy scenarios with an installed capacity around 5 TW by 2050. Despite silicon solar cells currently rule the PV market, the extremely more versatile thin film-based devices (mainly Cu(In,Ga)Se2 and CdTe ones) have almost matched them in performance and present room for improvement. The low availability of some elements in the present commercially available PV technologies and the recent strong fall of silicon module price below 1 $/Wp focused the attention of the scientific community on cheap earth-abundant materials. In this framework, thin film solar cells based on Cu2ZnSnS4 (CZTS) and the related sulfur selenium alloy Cu2ZnSn(S,Se)4 (CZTSSe) were strongly investigated in the last ten years. More recently, chalcogenide PV absorbers potentially able to face TW range applications better than CZTS and CZTSSe due to the higher abundance of their constituting elements are getting considerable attention. They are based on both MY2 (where M= Fe, Cu, Sn and Y=S and/or Se) and Cu2XSnY4 (where X= Fe, Mn, Ni, Ba, Co, Cd and Y=S and/or Se) chalcogenides. In this work, an extensive review of emerging earth-abundant thin film solar cells based on both MY2 and Cu2XSnY4 species is given, along with some considerations on the abundance and annual production of their constituting elements.
机译:到2017年底,全球约有1.8%的电力来自太阳能光伏(PV),预计在所有主要的未来能源情景中将发挥关键作用,到2050年装机容量约为5 TW。在光伏市场上,用途极为广泛的基于薄膜的器件(主要是Cu(In,Ga)Se2和CdTe器件)在性能上几乎与它们匹配,并且存在改进的空间。当前商业上可利用的光伏技术中某些元素的可用性较低,以及硅模块价格最近大幅下跌至低于1美元/ Wp,使科学界将注意力集中在廉价的富含地球的材料上。在此框架下,近十年来对基于Cu2ZnSnS4(CZTS)和相关硫硒合金Cu2ZnSn(S,Se)4(CZTSSe)的薄膜太阳能电池进行了深入研究。最近,由于硫属化物PV吸收剂的构成元素含量较高,因此潜在地比TWZ和CZTSSe能够更好地应对TW系列应用。它们基于MY2(其中M = Fe,Cu,Sn和Y = S和/或Se)和Cu2XSnY4(其中X = Fe,Mn,Ni,Ba,Co,Cd和Y = S和/或Se)硫属化物。在这项工作中,对基于MY2和Cu2XSnY4物种的新兴地球富集薄膜太阳能电池进行了广泛的综述,并就其构成元素的丰度和年产量进行了一些考虑。

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