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Combining Efficiency and Stability in Mixed Tin-Lead Perovskite Solar Cells by Capping Grains with an Ultra-thin 2D layer

机译:用超薄2D层覆盖混合锡铅钙钛矿太阳能电池的效率和稳定性

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The development of narrow-bandgap (Eg ∼ 1.2 eV) mixed tin-lead (Sn-Pb) halide perovskites enables all-perovskite tandem solar cells. Whereas pure-lead halide perovskite solar cells (PSCs) have advanced simultaneously in efficiency and stability, achieving this crucial combination remains a challenge in Sn-Pb PSCs. Here Sn-Pb perovskite grains are anchored with ultra-thin layered perovskites to overcome the efficiency-stability tradeoff. Defect passivation is achieved both on the perovskite film surface and at grain boundaries, an approach implemented by directly introducing phenethylammonium ligands in the antisolvent. This improves device operational stability and also avoids the excess formation of layered perovskites that would otherwise hinder charge transport. Sn-Pb PSCs with fill factors of 79% and a certified PCE of 18.95% are reported – among the highest for Sn-Pb PSCs. Using this approach, a 200-fold enhancement in device operating lifetime is achieved relative to the non-passivated Sn-Pb PSCs under full AM1.5G illumination, and a 200-hour diurnal operating time without efficiency drop is achieved under filtered AM1.5G illumination.
机译:窄带隙(例如〜2.2eV)混合锡铅(SN-PB)卤化物钙锌矿的发展使全钙钛矿串联太阳能电池能够。虽然纯铅卤化卤化物钙钛矿太阳能电池(PSC)同时先进,但实现这一至关重要的组合仍然是SN-PB PSC的挑战。这里SN-PB钙钛矿晶粒用超薄层状钙钛矿锚定,以克服效率 - 稳定性权衡。在钙钛矿薄膜表面和晶界上实现缺陷钝化,通过直接在防溶剂中引入苯乙基铵配体来实现的方法。这改善了器件操作稳定性,并且还避免了层状钙钛矿的过量形成,否则会阻碍电荷运输。报告了SN-PB PSC,填充因子为79%和18.95%的认证PCS - 对于SN-PB PSC而言,最高。使用这种方法,在器件的工作寿命的200倍的增强相对于非钝化的Sn-Pb的PSC下充分AM1.5G光照实现的,并且没有效率下降了200小时的昼夜操作时间下过滤AM1.5G实现照明。

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