Literature DB >> 32583905

Interfacial Molecular Doping of Metal Halide Perovskites for Highly Efficient Solar Cells.

Qi Jiang1, Zhenyi Ni1, Guiying Xu1,2, Yun Lin1, Peter N Rudd1, Rongming Xue2, Yaowen Li2, Yongfang Li2, Yongli Gao3, Jinsong Huang1.   

Abstract

Tailoring the doping of semiconductors in heterojunction solar cells shows tremendous success in enhancing the performance of many types of inorganic solar cells, while it is found challenging in perovskite solar cells because of the difficulty in doping perovskites in a controllable way. Here, a small molecule of 4,4',4″,4″'-(pyrazine-2,3,5,6-tetrayl) tetrakis (N,N-bis(4-methoxyphenyl) aniline) (PT-TPA) which can effectively p-dope the surface of FAx MA1- x PbI3 (FA: HC(NH2 )2 ; MA: CH3 NH3 ) perovskite films is reported. The intermolecular charge transfer property of PT-TPA forms a stabilized resonance structure to accept electrons from perovskites. The doping effect increases perovskite dark conductivity and carrier concentration by up to 4737 times. Computation shows that electrons in the first two layers of octahedral cages in perovskites are transferred to PT-TPA. After applying PT-TPA into perovskite solar cells, the doping-induced band bending in perovskite effectively facilitates hole extraction to hole transport layer and expels electrons toward cathode side, which reduces the charge recombination there. The optimized devices demonstrate an increased photovoltage from 1.12 to 1.17 V and an efficiency of 23.4% from photocurrent scanning with a stabilized efficiency of 22.9%. The findings demonstrate that molecular doping is an effective route to control the interfacial charge recombination in perovskite solar cells which is in complimentary to broadly applied defect passivation techniques.
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  interfacial molecular doping; perovskite solar cells

Year:  2020        PMID: 32583905     DOI: 10.1002/adma.202001581

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  3 in total

1.  Synergetic surface charge transfer doping and passivation toward high efficient and stable perovskite solar cells.

Authors:  Xing Guo; Jie Su; Zhenhua Lin; Xinhao Wang; Qingrui Wang; Zebing Zeng; Jingjing Chang; Yue Hao
Journal:  iScience       Date:  2021-03-05

2.  Unraveling Passivation Mechanism of Imidazolium-Based Ionic Liquids on Inorganic Perovskite to Achieve Near-Record-Efficiency CsPbI2Br Solar Cells.

Authors:  Jie Xu; Jian Cui; Shaomin Yang; Yu Han; Xi Guo; Yuhang Che; Dongfang Xu; Chenyang Duan; Wenjing Zhao; Kunpeng Guo; Wanli Ma; Baomin Xu; Jianxi Yao; Zhike Liu; Shengzhong Liu
Journal:  Nanomicro Lett       Date:  2021-12-02

3.  Improving the Stability and Efficiency of Perovskite Solar Cells by a Bidentate Anilinium Salt.

Authors:  Lucas Scalon; Rodrigo Szostak; Francineide L Araújo; Karla F Adriani; Julian F R V Silveira; Willian X C Oliveira; Juarez L F Da Silva; Caio C Oliveira; Ana Flávia Nogueira
Journal:  JACS Au       Date:  2022-05-04
  3 in total

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