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Robust Tin-Based Perovskite Solar Cells with Hybrid Organic Cations to Attain Efficiency Approaching 10%

机译:具有混合有机阳离子的稳健的锡基钙钛矿太阳能电池,效率接近10%

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摘要

The stability of a tin-based perovskite solar cell is a major challenge. Here, hybrid tin-based perovskite solar cells in a new series that incorporate a nonpolar organic cation, guanidinium (GA(+)), in varied proportions into the formamidinium (FA(+)) tin triiodide perovskite (FASnI(3)) crystal structure in the presence of 1% ethylenediammonium diiodide (EDAI(2)) as an additive, are reported. The device performance is optimized at a precursor ratio (GAI:FAI) of 20:80 to attain a power conversion efficiency (PCE) of 8.5% when prepared freshly; the efficiencies continuously increase to attain a record PCE of 9.6% after storage in a glove-box environment for 2000 h. The hybrid perovskite works stably under continuous 1 sun illumination for 1 h and storage in air for 6 days without encapsulation. Such a tin-based perovskite passes all harsh standard tests, and the efficiency of a fresh device, 8.3%, is certified. The great performance and stability of the device reported herein attains a new milestone for lead-free perovskite solar cells on a path toward commercial development.
机译:锡基钙钛矿太阳能电池的稳定性是一项重大挑战。在这里,新系列的杂化锡基钙钛矿太阳能电池将非极性有机阳离子胍(GA(+))以不同比例掺入甲ami(FA(+))三碘化钛钙钛矿(FASnI(3))晶体中据报道存在1%乙二铵二碘化物(EDAI(2))作为添加剂的结构。器件性能在前体比率(GAI:FAI)为20:80的情况下进行了优化,以在新鲜制备时达到8.5%的功率转换效率(PCE)。在手套箱环境中存放2000小时后,效率不断提高,达到创纪录的9.6%PCE。杂化钙钛矿在连续的1个阳光照射下可稳定工作1小时,并且无需密封即可在空气中储存6天。这种锡基钙钛矿经过所有严格的标准测试,并且新设备的效率为8.3%,已通过认证。本文报道的器件的出色性能和稳定性为无铅钙钛矿太阳能电池迈向商业发展的新里程碑。

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