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2D perovskite stabilized phase-pure formamidinium perovskite solar cells

机译:2D钙钛矿稳定相纯甲钙钛矿型钙钛矿太阳能电池

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摘要

Compositional engineering has been used to overcome difficulties in fabricating high-quality phase-pure formamidinium perovskite films together with its ambient instability. However, this comes alongside an undesirable increase in bandgap that sacrifices the device photocurrent. Here we report the fabrication of phase-pure formamidinium-lead tri-iodide perovskite films with excellent optoelectronic quality and stability. Incorporation of 1.67 mol% of 2D phenylethylammonium lead iodide into the precursor solution enables the formation of phase-pure formamidinium perovskite with an order of magnitude enhanced photoluminescence lifetime. The 2D perovskite spontaneously forms at grain boundaries to protect the formamidinium perovskite from moisture and suppress ion migration. A stabilized power conversion efficiency (PCE) of 20.64% (certified stabilized PCE of 19.77%) is achieved with a short-circuit current density exceeding 24 mA cm2 and an open-circuit voltage of 1.130 V, corresponding to a loss-in-potential of 0.35 V, and significantly enhanced operational stability.
机译:组成工程已经被用来克服制造高质量相纯甲钛酸钙钛矿薄膜及其周围环境不稳定性的困难。然而,这伴随着带隙的不期望的增加而牺牲了器件的光电流。在这里,我们报道了具有优良的光电质量和稳定性的纯相甲酰胺铅三碘化钙钛矿薄膜的制造。在前体溶液中加入1.67 mol%的2D苯基乙基铵碘化铅碘化物可以形成相纯的钙钛矿型钙钛矿,其光致发光寿命得以提高。 2D钙钛矿在晶界自发形成,以保护甲ami钙钛矿免受潮气并抑制离子迁移。短路电流密度超过24μmAcm - 2 且短路电流密度超过20μm时,可实现20.64%的稳定功率转换效率(PCE)(经认证的稳定PCE为19.77%)。 1.130 V的开路电压,对应于0.35 V的电位损失,并显着提高了工作稳定性。

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