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Achieving Efficient and Stable Perovskite Solar Cells in Ambient Air Through Non-Halide Engineering

机译:通过非卤化物工程实现环境空气中高效稳定的钙钛矿太阳能电池

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The realization of highly efficient perovskite solar cells (PSCs) in ambient air is considered to be advantageous for low-cost commercial manufacturing. However, it is fundamentally difficult to achieve comparable device performance to that obtained in an inert atmosphere, especially when the ambient humidity is high. Here, an effective precursor engineering that simultaneously employs non-halide lead acetate and lead thiocyanate lead sources for fabricating high-quality methylammonium lead iodide perovskite films in ambient air with enhanced moisture tolerance, is reported. The presence of Ac- and SCN- ions not only enables the facile formation of homogeneous and highly crystalized perovskite films, but also directs the uniform growth of the crystals along the (110) direction. Accordingly, a 20.55% efficiency is demonstrated, one of the best results for air-processed MAPbI(3) PSCs, which is also the highest value achieved with non-halide lead sources. Furthermore, the unencapsulated device shows fivefold prolonged air stability (3600 h) compared to the conventional PbI2-based PSC. Together with the use of non-toxic antisolvent, this strategy is fully compatible with ambient air operation and thus of great potential for practical applications.
机译:在环境空气中实现高效的钙钛矿太阳能电池(PSC)被认为是低成本商业制造的有利。然而,从根本上难以实现在惰性气氛中获得的可比性装置性能,特别是当环境湿度高时。这里,报道了一种有效的前体工程,其同时使用非卤化物铅乙酸盐和铅硫氰酸铅铅源,用于在具有增强的耐湿性的环境空气中在环境空气中制造高质量的甲基铅碘化物钙钛矿膜。 AC-和SCN-的存在不仅能够形成均匀和高度结晶的钙钛矿薄膜的容纳形成,而且还可以引导沿(110)方向均匀生长晶体的均匀生长。因此,证明了20.55%的效率,空气加工MAPBI(3)PSC的最佳结果之一,也是用非卤化物铅来实现的最高值。此外,与常规的基于PBI2的PSC相比,未封装的装置显示出五倍的延长空气稳定性(3600h)。与使用无毒反溶剂一起使用,该策略与环境空气运行完全兼容,因此对实际应用具有很大的潜力。

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