材料科学
钙钛矿(结构)
旋涂
能量转换效率
化学工程
钙钛矿太阳能电池
自旋(空气动力学)
光电子学
涂层
纳米技术
热力学
物理
工程类
作者
Jionghua Wu,Xin Xu,Yanhong Zhao,Jiangjian Shi,Yuzhuan Xu,Yanhong Luo,Dongmei Li,Huijue Wu,Qingbo Meng
标识
DOI:10.1021/acsami.7b08504
摘要
DMF as an additive has been employed in FAI/MAI/IPA (FA= CH 2 (NH 2 ) 2, MA = CH 3 NH 3, IPA = isopropanol) solution for a two-step multicycle spin-coating method in order to prepare high-quality FA x MA 1– x PbI 2.55 Br 0.45 perovskite films. Further investigation reveals that the existence of DMF in the FAI/MAI/IPA solution can facilitate perovskite conversion, improve the film morphology, and reduce crystal defects, thus enhancing charge-transfer efficiency. By optimization of the DMF amount and spin-coating cycles, compact, pinhole-free perovskite films are obtained. The nucleation mechanisms of perovskite films in our multicycle spin-coating process are suggested; that is, the introduction of DMF in the spin-coating FAI/MAI/IPA solution can lead to the formation of an amorphous phase PbX 2 –AI–DMSO–DMF (X = I, Br; A = FA, MA) instead of intermediate phase (MA) 2 Pb 3 I 8 ·2DMSO. This amorphous phase, similar to that in the one-step method, can help FAI/MAI penetrate into the PbI 2 framework to completely convert into the perovskite. As high as 20.1% power conversion efficiency (PCE) has been achieved with a steady-state PCE of 19.1%. Our work offers a simple repeatable method to prepare high-quality perovskite films for high-performance PSCs and also help further understand the perovskite-crystallization process.
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