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Exploring AgBi_xI_(3x+1) semiconductor thin films for lead-free perovskite solar cells

机译:探索用于无铅钙钛矿太阳能电池的AgBi_xI_(3x + 1)半导体薄膜

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Perovskite solar cells are based on organolead halide compounds which are used as highly efficient solar cell absorber materials. However, their lead component is a high human health concern, toxic, and causes strong damages when disperse in the environment. In the present paper, silver iodobismuthate compounds are investigated as lead-free semiconductors in replacement of organolead halide in perovskite solar cells. We describe the design of thin films of AgBixI3x (+) (1) for x composition ranging between 1 and 2.25. The preparation is optimized to get well-crystallized well-covering layers. The prepared compounds are semiconductors, absorbing light below 700 nm. Compounds for x 1.5 have a pure rhombohedral phase. Ag2Bi3I11 is crystallized in the pure cubic phase, yields to the layer with the largest grains and is the composition giving the best solar cell power conversion efficiency (PCE). For higher Bi content, a mixture of cubic AgBi3I11 and BiI3 is produced. The device design includes the use of a SnO2 hole blocking layer to get good efficiency. Based on these results it can be concluded that AgBixI3x (+) (1) compounds are potentially promising properties for application in optoelectronic devices. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钙钛矿太阳能电池基于有机卤化铅化合物,被用作高效的太阳能电池吸收材料。但是,它们的铅成分对人体健康的影响很高,有毒,并且散布在环境中会造成严重破坏。在本文中,研究了碘铋铋银化合物作为钙钛矿太阳能电池中有机卤化铅的替代品中的无铅半导体。我们描述了x组成介于1和2.25之间的AgBixI3x(+)(1)薄膜的设计。对制备进行了优化,以得到结晶良好的覆盖层。制备的化合物是半导体,吸收700 nm以下的光。 x <1.5的化合物具有纯菱形面相。 Ag2Bi3I11在纯立方相中结晶,屈服成具有最大晶粒的层,并且是提供最佳太阳能电池功率转换效率(PCE)的成分。对于更高的Bi含量,将生成立方AgBi3I11和BiI3的混合物。该器件设计包括使用SnO2空穴阻挡层来获得良好的效率。根据这些结果,可以得出结论,AgBixI3x(+)(1)化合物具有潜在的前景广阔的特性,可用于光电子器件。 (C)2017 Elsevier Ltd.保留所有权利。

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