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Unraveling the hidden function of a stabilizer in a precursor in improving hybrid perovskite film morphology for high efficiency solar cells

机译:揭开稳定剂在前体中的隐性功能改善高效太阳能电池杂交钙钛矿薄膜形态

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摘要

The morphology of the organometal trihalide perovskite (OTP) plays a critical role in the performance of solar cell devices. Nevertheless it has been frequently reported that the morphology of OTP films tends to be different in different laboratories even with the same film preparation procedure, which makes it very difficult to compare and understand the material and device physics. Here, we unravel a critical role of the H3PO2 stabilizer in HI, which has been largely ignored, in controlling the morphology of the perovskite films. The H3PO2 stabilizer in HI solution introduces MAH2PO2 impurities into the synthesized MAI (non-purified MAI) by reacting with methylamine (MA) aqueous solution. MAH2PO2 impurities can slow down the overall crystallization process of perovskite by forming an intermediate phase of Pb(H2PO2)2. Both MAH2PO2 and Pb(H2PO2)2 impede the fast reaction of PbI2 and MAI, resulting in highly uniform and smooth perovskite films with larger grain sizes. The recrystallization of non-purified MAI can remove the MAH2PO2 impurity and form purified MAI, which however results in rough and non-uniform perovskite films. Uniform and smooth perovskite films can also be obtained by directly adding artificially synthesized MAH2PO2 into the purified MAI precursor. This study also suggests Pb(H2PO2)2 to be a new precursor to formhigh quality perovskite films.
机译:有机金属钙钛矿三卤化(OTP)的形态在太阳能电池器件的性能起关键作用。尽管如此,它已被频繁报道,OTP膜的形态趋向于在不同的实验室不同即使使用相同的薄膜制备过程,这使得它非常难以比较和了解材料和器件物理。在这里,我们解开在HI的H3PO2稳定,这在很大程度上被忽略,在控制钙钛矿薄膜的形态的关键作用。在HI溶液中的H 3 PO 2稳定剂,通过与甲胺(MA)水溶液反应引入MAH2PO2杂质进入合成MAI(未纯化的MAI)。 MAH2PO2杂质可以通过形成的Pb(H2PO2)2的中间相位放慢钙钛矿的整体结晶过程。既MAH2PO2和Pb(H2PO2)2阻碍碘化铅和MAI的快速反应,从而产生具有较大晶粒尺寸高度均匀和光滑的钙钛矿薄膜。未纯化的MAI的再结晶可除去MAH2PO2杂质和纯化形式MAI,然而这会导致粗糙和不均匀的钙钛矿薄膜。均匀且光滑的钙钛矿薄膜,也可以通过直接添加人工合成MAH2PO2获得到纯化MAI前体。这项研究还表明,铅(H2PO2)2是一个新的前体formhigh质量钙钛矿薄膜。

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