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High-throughput computational material screening of the cycloalkane-based two-dimensional Dion–Jacobson halide perovskites for optoelectronics

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【作者】 赵国琪颉家豪周琨邢邦昱王新江田伏钰贺欣张立军

【Author】 Guoqi Zhao;Jiahao Xie;Kun Zhou;Bangyu Xing;Xinjiang Wang;Fuyu Tian;Xin He;Lijun Zhang;State Key Laboratory of Integrated Optoelectronics, Key Laboratory of Automobile Materials of MOE,College of Materials Science and Engineering, Jilin University;

【通讯作者】 贺欣;

【机构】 State Key Laboratory of Integrated Optoelectronics, Key Laboratory of Automobile Materials of MOE,College of Materials Science and Engineering, Jilin University

【摘要】 Two-dimensional(2D) layered perovskites have emerged as potential alternates to traditional three-dimensional(3D)analogs to solve the stability issue of perovskite solar cells. In recent years, many efforts have been spent on manipulating the interlayer organic spacing cation to improve the photovoltaic properties of Dion–Jacobson(DJ) perovskites. In this work, a serious of cycloalkane(CA) molecules were selected as the organic spacing cation in 2D DJ perovskites, which can widely manipulate the optoelectronic properties of the DJ perovskites. The underlying relationship between the CA interlayer molecules and the crystal structures, thermodynamic stabilities, and electronic properties of 58 DJ perovskites has been investigated by using automatic high-throughput workflow cooperated with density-functional(DFT) calculations.We found that these CA-based DJ perovskites are all thermodynamic stable. The sizes of the cycloalkane molecules can influence the degree of inorganic framework distortion and further tune the bandgaps with a wide range of 0.9–2.1 eV.These findings indicate the cycloalkane molecules are suitable as spacing cation in 2D DJ perovskites and provide a useful guidance in designing novel 2D DJ perovskites for optoelectronic applications.

【Abstract】 Two-dimensional(2D) layered perovskites have emerged as potential alternates to traditional three-dimensional(3D)analogs to solve the stability issue of perovskite solar cells. In recent years, many efforts have been spent on manipulating the interlayer organic spacing cation to improve the photovoltaic properties of Dion–Jacobson(DJ) perovskites. In this work, a serious of cycloalkane(CA) molecules were selected as the organic spacing cation in 2D DJ perovskites, which can widely manipulate the optoelectronic properties of the DJ perovskites. The underlying relationship between the CA interlayer molecules and the crystal structures, thermodynamic stabilities, and electronic properties of 58 DJ perovskites has been investigated by using automatic high-throughput workflow cooperated with density-functional(DFT) calculations.We found that these CA-based DJ perovskites are all thermodynamic stable. The sizes of the cycloalkane molecules can influence the degree of inorganic framework distortion and further tune the bandgaps with a wide range of 0.9–2.1 eV.These findings indicate the cycloalkane molecules are suitable as spacing cation in 2D DJ perovskites and provide a useful guidance in designing novel 2D DJ perovskites for optoelectronic applications.

【基金】 supported by the National Natural Science Foundation of China (Grant No. 62004080);the Postdoctoral Innovative Talents Supporting Program (Grant No. BX20190143);the China Postdoctoral Science Foundation (Grant No. 2020M670834)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年03期
  • 【分类号】TM914.4;TB34
  • 【下载频次】10
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