材料科学
非阻塞I/O
钙钛矿(结构)
磁滞
能量转换效率
卤化物
化学工程
降级(电信)
电化学
无机化学
光电子学
电极
凝聚态物理
物理化学
电子工程
催化作用
有机化学
化学
工程类
物理
作者
Diego Di Girolamo,Fabio Matteocci,Felix Utama Kosasih,Ganna Chistiakova,Weiwei Zuo,Giorgio Divitini,Lars Korte,Caterina Ducati,Aldo Di Carlo,Danilo Dini,Antonio Abate
标识
DOI:10.1002/aenm.201901642
摘要
Abstract In perovskite solar cells (PSCs), the interfaces are a weak link with respect to degradation. Electrochemical reactivity of the perovskite's halides has been reported for both molecular and polymeric hole selective layers (HSLs), and here it is shown that also NiO brings about this decomposition mechanism. Employing NiO as an HSL in p–i–n PSCs with power conversion efficiency (PCE) of 16.8%, noncapacitive hysteresis is found in the dark, which is attributable to the bias‐induced degradation of perovskite/NiO interface. The possibility of electrochemically decoupling NiO from the perovskite via the introduction of a buffer layer is explored. Employing a hybrid magnesium‐organic interlayer, the noncapacitive hysteresis is entirely suppressed and the device's electrical stability is improved. At the same time, the PCE is improved up to 18% thanks to reduced interfacial charge recombination, which enables more efficient hole collection resulting in higher V oc and FF.
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