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首页> 外文期刊>Journal of Solid State Chemistry >Improvement of efficiency and stability of CuSCN-based inverted perovskite solar cells by post-treatment with potassium thiocyanate
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Improvement of efficiency and stability of CuSCN-based inverted perovskite solar cells by post-treatment with potassium thiocyanate

机译:用硫氰酸钾后处理改善CUSCN基倒钙钛矿太阳能电池的效率和稳定性

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We report an inverted perovskite solar cell (PSC) based on a solution-processed CuSCN thin film for hole transporting layer. Methylammonium lead iodide (MAPbI(3)) perovskite film is formed on the CuSCN layer, which shows hysteresis-less current-voltage characteristics. Post-treatment of the CuSCN film with KSCN improves power conversion efficiency (PCE) from 11.9% to 14.9% due to main increment of photocurrent density from 16.71 to 19.20 mA/cm(2). From the test with various salts of KX (X = SCN, I and Br) and MSCN (M = K and Na), we have found that thiocyanate anion plays more critical role in improving photovoltaic parameters. Photoluminescence (PL) is more quenched and PL decay time is faster after post-treatment with KSCN, which is indicative of better charge separation and responsible for the improved photocurrent density. In addition interface recombination, estimated by impedance spectroscopy, is suppressed by the post-treatment with KSCN, which is related to the improved open-circuit voltage. PSCs with KSCN-treated CuSCN demonstrates better photo- and humidity-stability as compared to those with untreated CuSCN, which is likely to correlate with improved interface.
机译:我们基于用于空穴传输层的溶液加工的CUSCN薄膜来报告倒钙钛矿太阳能电池(PSC)。在CUSCN层上形成甲基铅碘化物(MAPBI(3))钙钛矿膜,其显示滞后的电流 - 电压特性。由于光电流密度的主要增量从16.71至19.20 mA / cm(2),具有KSCN的CUSCN膜的后处理将功率转换效率(PCE)从11.9%提高到14.9%。从用kx(x = scn,i和br)和mscn(m = k和na)的各种盐的测试,我们发现硫氰酸酯的阴离子在改善光伏参数方面发挥着更重要的作用。用KSCn后处理后,光致发光(PL)更淬火,并且PL衰减时间更快,其指示更好的电荷分离并负责改善的光电流密度。另外,通过阻抗光谱估计的界面重组,通过与KSCN的后处理抑制,与改进的开路电压有关。具有KSCN处理的CUSCN的PSCS显示与未经处理的CUSCN的稳定性更好的光照和湿度稳定,这可能与改进的界面相关。

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