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Two-dimensional lead-free iodide-based hybrid double perovskites: crystal growth, thin-film preparation and photocurrent responses†
Le-Yu Bi,Yue-Qiao Hu,Mu-Qing Li,Tian-Li Hu,Hao-Lan Zhang,Xing-Tian Yin,Wen-Xiu Que,Mohamed Saber Lassoued,Yan-Zhen Zheng
Journal of Materials Chemistry A Pub Date : 07/26/2019 00:00:00 , DOI:10.1039/C9TA04325J
Abstract

Organometal halide perovskites (OHPs) are a kind of promising materials applied in solar cells. However, the toxicity of lead in OHPs is considered as an environmental problem. Herein, we report two lead-free two-dimensional (2D) iodide-based OHPs, namely (C6H16N2)2AgBiI8·H2O (AgBiI) and (C6H16N2)2CuBiI8·0.5H2O (CuBiI), where C6H14N2 = 1,4-cyclohexanediamine, with a double perovskite structure. These two bimetallic perovskites show the optical band gaps of 1.93 eV and 1.68 eV. In addition, these 2D perovskite materials can form smooth films through a simple one-step spin-coating approach. Photocurrent measurements under xenon lamp irradiation indicate obvious photoresponses, suggesting that these semiconducting materials have the potential for application in light harvesting.

Graphical abstract: Two-dimensional lead-free iodide-based hybrid double perovskites: crystal growth, thin-film preparation and photocurrent responses
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