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混合卤化物CH3NH3PbI3-xXx(X = Cl、Br、I)钙钛矿:气相辅助溶液沉积及其作为太阳能电池吸收剂的应用

Mixed-Halide CH3 NH3 PbI3-x Xx (X=Cl, Br, I) Perovskites: Vapor-Assisted Solution Deposition and Application as Solar Cell Absorbers.

作者信息

Sedighi Rahime, Tajabadi Fariba, Shahbazi Saeed, Gholipour Somayeh, Taghavinia Nima

机构信息

Institute for Nanoscience and Nanotechnology, Sharif University of Technology, Tehran, 14588, Iran.

Department of Nanotechnology and Advanced Materials, Materials and Energy Research Center, Karaj, 31787-316, Iran.

出版信息

Chemphyschem. 2016 Aug 4;17(15):2382-8. doi: 10.1002/cphc.201600230. Epub 2016 May 19.

Abstract

There have been recent reports on the formation of single-halide perovskites, CH3 NH3 PbX3 (X=Cl, Br, I), by means of vapor-assisted solution processing. Herein, the successful formation of mixed-halide perovskites (CH3 NH3 PbI3-x Xx ) by means of a vapor-assisted solution method at ambient atmosphere is reported. The perovskite films are synthesized by exposing PbI2 film to CH3 NH3 X (X=I, Br, or Cl) vapor. The prepared perovskite films have uniform surfaces with good coverage, as confirmed by SEM images. The inclusion of chlorine and bromine into the structure leads to a lower temperature and shorter reaction time for optimum perovskite film formation. In the case of CH3 NH3 PbI3-x Clx , the optimum reaction temperature is reduced to 100 °C, and the resulting phases are CH3 NH3 PbI3 (with trace Cl) and CH3 NH3 PbCl3 with a ratio of about 2:1. In the case of CH3 NH3 PbI3-x Brx , single-phase CH3 NH3 PbI2 Br is formed in a considerably shorter reaction time than that of CH3 NH3 PbI3 . The mesostructured perovskite solar cells based on CH3 NH3 PbI3 films show the best optimal power conversion efficiency of 13.5 %, whereas for CH3 NH3 PbI3-x Clx and CH3 NH3 PbI3-x Brx the best recorded efficiencies are 11.6 and 10.5 %, respectively.

摘要

最近有报道称通过气相辅助溶液法制备了单卤化物钙钛矿CH3NH3PbX3(X = Cl、Br、I)。在此,报道了在环境气氛下通过气相辅助溶液法成功制备了混合卤化物钙钛矿(CH3NH3PbI3 - xXx)。通过将PbI2薄膜暴露于CH3NH3X(X = I、Br或Cl)蒸气中来合成钙钛矿薄膜。扫描电子显微镜图像证实,所制备的钙钛矿薄膜表面均匀,覆盖率良好。在结构中引入氯和溴可降低形成最佳钙钛矿薄膜的温度并缩短反应时间。对于CH3NH3PbI3 - xClx,最佳反应温度降至100°C,所得相为CH3NH3PbI3(含痕量Cl)和CH3NH3PbCl3,比例约为2:1。对于CH3NH3PbI3 - xBrx,单相CH3NH3PbI2Br在比CH3NH3PbI3短得多的反应时间内形成。基于CH3NH3PbI3薄膜的介观结构钙钛矿太阳能电池显示出最佳的最优功率转换效率为13.5%,而对于CH3NH3PbI3 - xClx和CH3NH3PbI3 - xBrx,记录到的最佳效率分别为11.6%和10.5%。

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