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Metal sulfide precursor aqueous solutions for fabrication of Cu2ZnSn(S,Se)(4) thin film solar cells

机译:用于制备Cu2ZnSn(S,Se)(4)薄膜太阳能电池的金属硫化物前体水溶液

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摘要

Aqueous solution deposition of metal chalcogenide semiconductor thin films is considered a green and low-cost approach. However, it is hard to find a general aqueous solution approach to deposit various kinds of high-quality metal sulfide thin films. Here, we describe a green and robust ammonium thioglycolate aqueous solution approach, and fifteen types of metal sulfide precursor solutions (metal = Cu, Zn, Sn, Ge, In, Sb, Mg, Cd, Mn, Bi, Fe, Ni, Li, Na, K) can be prepared using metal oxides or metal hydroxides as raw materials at room temperature under an air atmosphere. Moreover, elemental sulfur and selenium can also be highly dissolved. By this green route, high quality CZTS nanocrystal thin films can be deposited by directly coating the mixed Cu, Zn, and Sn precursor solutions without the need for complex nanocrystal synthesis. The remarkable power conversion efficiency of 6.62% was achieved, which is the highest value for aqueous solution deposited CZTSSe thin film solar cells.
机译:金属硫属化物半导体薄膜的水溶液沉积被认为是绿色且低成本的方法。但是,很难找到一种通常的水溶液沉积方法来沉积各种高质量的金属硫化物薄膜。在这里,我们描述了一种绿色且坚固的硫代乙醇酸铵水溶液方法,以及十五种类型的金属硫化物前体溶液(金属= Cu,Zn,Sn,Ge,In,Sb,Mg,Cd,Mn,Bi,Fe,Ni,Li ,Na,K)可以在室温,空气气氛下使用金属氧化物或金属氢氧化物作为原料制备。此外,元素硫和硒也可以高度溶解。通过这种绿色途径,可以通过直接涂覆混合的Cu,Zn和Sn前驱体溶液来沉积高质量的CZTS纳米晶体薄膜,而无需复杂的纳米晶体合成。达到了6.62%的卓越功率转换效率,这是水溶液沉积的CZTSSe薄膜太阳能电池的最高值。

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