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First Principle Study of Cesium-based Lead-free Halide Double Perovskites

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【作者】 郑伟; 甘小燕; DU Dingjin; WANG Yajie; DAI Siqi; GUO Liling; LIU Hanxing;

【Author】 ZHENG Wei;GAN Xiaoyan;DU Dingjin;WANG Yajie;DAI Siqi;GUO Liling;LIU Hanxing;School of Materials Science and Engineering, Wuhan University of Technology;International School of Materials Science and Engineering, Wuhan University of Technology;

【通讯作者】 甘小燕;

【机构】 School of Materials Science and Engineering, Wuhan University of Technology; International School of Materials Science and Engineering, Wuhan University of Technology;

【摘要】 Inorganic halide double perovskites A2B’B"X6 have gained significant interests for their diverse composition,stable physicochemical properties,and potential for photoelectric applications.The influences of trivalent and monovalent cations on the formation energy,decomposition energy,electronic structure and optical properties of cesium-based lead-free Cs+2B’B"Br6 (B’=Na+,In+Cu+,or Ag+;B"=Bi3,Sb3+,In3+) are systematically studied.In view of the analysis and results of the selected double perovskites,for the double perovskites with different B-site trivalent cation,the band gap increases in the order of Cs2AgInBr6,Cs2AgSbBr6 and Cs2AgBiBr6,with Cs2AgBiBr6 possessing the highest thermodynamic stability.Therefore,the Bi-based perovskites are further studied to elucidate the effect of monovalent cation on their stability and electronics.Results show that the thermodynamic stability rises in the sequence of Cs2NaBiBr6,Cs2InBiBr6,Cs2AgBiBr6 and Cs2CuBiBr6.Notably,Cs2CuBiBr6 exhibits a relatively narrow and appropriate band gap of 1.4634 eV,together with the highest absorption coefficient than other compounds,suggesting that Cs2CuBiBr6 is a promising light absorbing material that can be further explored experimentally and be applied to optoelectronic devices.Our research offers theoretical backing for the potential optoelectronic application of cesium-based lead-free halide double perovskites in solar energy conversion.

【Abstract】 Inorganic halide double perovskites A2B’B"X6 have gained significant interests for their diverse composition,stable physicochemical properties,and potential for photoelectric applications.The influences of trivalent and monovalent cations on the formation energy,decomposition energy,electronic structure and optical properties of cesium-based lead-free Cs+2B’B"Br6 (B’=Na+,In+Cu+,or Ag+;B"=Bi3,Sb3+,In3+) are systematically studied.In view of the analysis and results of the selected double perovskites,for the double perovskites with different B-site trivalent cation,the band gap increases in the order of Cs2AgInBr6,Cs2AgSbBr6 and Cs2AgBiBr6,with Cs2AgBiBr6 possessing the highest thermodynamic stability.Therefore,the Bi-based perovskites are further studied to elucidate the effect of monovalent cation on their stability and electronics.Results show that the thermodynamic stability rises in the sequence of Cs2NaBiBr6,Cs2InBiBr6,Cs2AgBiBr6 and Cs2CuBiBr6.Notably,Cs2CuBiBr6 exhibits a relatively narrow and appropriate band gap of 1.4634 eV,together with the highest absorption coefficient than other compounds,suggesting that Cs2CuBiBr6 is a promising light absorbing material that can be further explored experimentally and be applied to optoelectronic devices.Our research offers theoretical backing for the potential optoelectronic application of cesium-based lead-free halide double perovskites in solar energy conversion.

【基金】 Funded by the National Natural Science Foundation of China (No.51772228);the Open Fund of Sanya Science and Education Innovation Park (No.2022KF0008)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2023年03期
  • 【分类号】TB34
  • 【下载频次】13
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