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Effect of Lead-Free Perovskite Cs_2SnI_6 Addition in the Structure of Dye-Sensitized Solar Cell

机译:无铅钙钛矿CS_2SNI_6在染料敏化太阳能电池结构中的影响

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Over the past few years, metal halide perovskites have been considered as a promising material for application in photovoltaic devices because of its unique optical and electrical properties. In particular, Sn-based perovskites have been being considered to replace Pb-based perovskite because of the Pb toxicity that will raise serious concerns on the environmental issue. In this report, we present our attempt to synthesize the Sn-based perovskite (namely, Cs_2SnI_6), which is air and thermal stable, and use it as an electron transport layer in dye-sensitized solar cells (DSSC) for improving its power conversion efficiency. The synthesize of Cs_2SnI_6 perovskite was done by mixing Cs_2CO_3 in HI and SnI4 in ethanol to form a precipitate at room temperature. The purification process was an important part to collect effectively the synthesis product. The fabrication of DSSC was done by a standard process based on the screen printing and spin-coating techniques, while the characterization of Cs_2SnI_6 was done by UV-Vis spectroscopy and XRD measurement. In the present experiment, the addition of the Cs_2SnI_6 layer was performed by spin coating the Cs_2SnI_6 solution onto the TiO_2 mesoporous layer. The photovoltaic performance of the fabricated DSSC shows a significant enhancement in the short circuit photocurrent density (Jsc) and conversion efficiency, that is, from 15.04 mA/cm~2 to 16.33 mA/cm~2 from 5.7% to 6.75% due to the incorporation of spin-coated 5 mM Cs_2SnI_6 in comparison to the reference cell without Cs_2SnI_6.
机译:在过去几年中,由于其独特的光学和电气性能,金属卤化金钙酯被认为是在光伏器件中应用的有希望的材料。特别是,由于PB的毒性,已经被认为是替代基于PB的Perovskite,这将对环境问题提出严重问题。在本报告中,我们展示了我们试图合成SN基钙钛矿(即CS_2SNI_6),该钙钛矿(即CS_2SNI_6)是空气和热稳定的,并用作染料敏化太阳能电池(DSSC)的电子传输层,以改善其功率转换效率。 CS_2SNI_6钙钛矿的合成是通过将Cs_2CO_3在乙醇中混合和SNI4在室温下形成沉淀物来完成的。纯化过程是有效地收集合成产品的重要部分。 DSSC的制造是通过基于丝网印刷和旋涂技术的标准过程完成的,而CS_2SNI_6的表征是通过UV-Vis光谱和XRD测量完成的。在本实验中,通过将CS_2SNI_6溶液旋转到TiO_2中孔层上来进行CS_2SNI_6层的添加。制造的DSSC的光伏性能显示出短路光电流密度(JSC)和转化效率的显着增强,即15.04 mA / cm〜2至16.33mA / cm〜2,由于此外的5.7%至6.75%与没有CS_2SNI_6的参考单元相比,旋涂的5mm CS_2SNI_6结合。

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