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Spontaneous grain polymerization for efficient and stable perovskite solar cells

机译:用于高效稳定的Perovskite太阳能电池的自发谷物聚合

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Spontaneous grain polymerization strategy is proposed to fabricate efficient and stable perovskite solar cells (PSCs) through the incorporation of polymerizable additive ethyl 2-cyanoacrylate (E2CA). E2CA lies in and chemically anchors to grain boundaries (GBs) owing to -CN and -C=O groups' coordination with PbI2, thus passivating the defects at GBs and leading to high devices efficiency of 21.03%. Importantly, E2CA in perovskite films will spontaneously polymerize to a hydrophobic polymer at GBs when exposed in moisture air, thus blocking GBs channel for moisture penetration and enhancing the moisture-resisting properties of perovskite films. As a result, PSCs with E2CA exhibit superior stability in moisture air (relative humidity: 40-60%), retaining similar to 90% of the maximum efficiency after aging over 1000 h. Even under high temperature (85 degrees C) in moisture air, non-encapsulated MAPbI(3)-E2CA devices still show good stability despite the burn-in degradation, retaining over 90% of the post burn-in efficiency after aging 200 h.
机译:提出了通过掺入可聚合添加剂乙基2-氰基丙烯酸乙酯(E2CA)来制造有效和稳定的钙钛矿太阳能电池(PSC)的自发性晶粒聚合策略。 E2CA由于-CN和-C = O基团的PBI2而在于和化学锚固到晶界(GBS),从而将GBS的缺陷钝化并导致效率为21.03%。重要的是,当在水分空气中暴露时,钙钛矿膜中的E2Ca在GBS下将其在GBS的疏水聚合物中自发地聚合,从而阻断GBS通道用于水分渗透,提高钙钛矿膜的耐湿性能。结果,具有E2CA的PSC在水分空气中具有卓越的稳定性(相对湿度:40-60%),在1000小时内老化后保持类似于最大效率的90%。即使在水分空气中的高温(85摄氏度)下,尽管燃烧降解,但仍显示出良好的稳定性,尽管燃烧降解,但在200小时老化后仍然超过90%的燃烧后效率。

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