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Azatriphenylene-based D-A-D-typed hole-transporting materials for perovskite solar cells with tunable energy levels and high mobility
Sun, Zhu-Zhu1; Feng, Shuai2; Ding, Wei-Lu3; Peng, Xing-Liang4; Liu, Jing-Lun1; Xu, Xing-Lei1
2021-08-01
Source PublicationSOLAR ENERGY
ISSN0038-092X
Volume224Pages:491-499
Abstract

Computational study on relationship between molecular structure and property of small molecule holetransporting materials (HTMs) is an efficient pathway to acquire potential HTMs for perovskite solar cells (PSCs). Herein, by conjugating the acceptor groups of electron-deficient diazatriphenylene (DAT), tetraazatriphenylene (TAT) and hexaazatriphenylene (HAT), and p-methoxy-substituted triphenylamine (MeOTPA) electron-donors, six novel donor-acceptor-donor (D-A-D) typed HTMs (SM11 - SM16) are designed. Furthermore, three thiophene-substituted acceptors (SM17 - SM19) are also investigated. The influences of acceptor moiety on the performance of HTMs are studied by carrying out theoretical chemical calculations. Compared with the reported HTM with triphenylene unit (TPH-T), the new tailored HTMs (SM11 - SM19) exhibit more negative highest occupied molecular orbital (HOMO) energy levels and slightly red-shifted light absorption due to the increased electron-deficient property of acceptor group and linked positions with the MeOTPA-donor. Meanwhile, our results show that the small torsion angle between the acceptor and the donor is beneficial to promote the hole transport in HTMs, and the thiophene units on acceptor may also be helpful to enhance the charge mobility of HTMs. In addition, the large charge transfer amounts and small exciton binding energies are found for designed HTMs, which will be favorable to facilitate the electron-hole separation in HTMs. The stability of HTMs may be decreased based on the calculated results of electrostatic surface potential and absolute hardness. We hope this work could highlight the potential of azatriphenylene acceptor-based D-A-D typed HTMs for efficient PSCs.

KeywordPerovskite Solar Cells Small Molecule Htms D-a-d-typed Configuration Azatriphenylene Computational Study
DOI10.1016/j.solener.2021.06.030
Language英语
WOS KeywordLow-cost ; Electrochemical Properties ; Homo Levels ; Efficient ; Benzothiadiazole ; Performance ; Stabilize ; Acceptor ; Improve
Funding ProjectNational Natural Science Foundation of China[22008238] ; Tai'an City Technology Development Plan[2019GX049] ; high-performance computing platform of Xinyang Normal University
WOS Research AreaEnergy & Fuels
WOS SubjectEnergy & Fuels
Funding OrganizationNational Natural Science Foundation of China ; Tai'an City Technology Development Plan ; high-performance computing platform of Xinyang Normal University
WOS IDWOS:000681518700006
PublisherPERGAMON-ELSEVIER SCIENCE LTD
Citation statistics
Document Type期刊论文
Identifierhttp://ir.ipe.ac.cn/handle/122111/49579
Collection中国科学院过程工程研究所
Corresponding AuthorSun, Zhu-Zhu; Ding, Wei-Lu
Affiliation1.Heze Univ, Coll Phys & Elect Engn, Heze 274015, Peoples R China
2.Taishan Univ, Coll Chem & Chem Engn, Tai An 271021, Shandong, Peoples R China
3.Chinese Acad Sci, Inst Proc Engn, Beijing Key Lab Ion Liquids Clean Proc, CAS Key Lab Green Proc & Engn,State Key Lab Multi, Beijing 100190, Peoples R China
4.Tsinghua Univ, Dept Chem, MOE Key Lab Organ OptoElect & Mol Engn, Beijing 100084, Peoples R China
Recommended Citation
GB/T 7714
Sun, Zhu-Zhu,Feng, Shuai,Ding, Wei-Lu,et al. Azatriphenylene-based D-A-D-typed hole-transporting materials for perovskite solar cells with tunable energy levels and high mobility[J]. SOLAR ENERGY,2021,224:491-499.
APA Sun, Zhu-Zhu,Feng, Shuai,Ding, Wei-Lu,Peng, Xing-Liang,Liu, Jing-Lun,&Xu, Xing-Lei.(2021).Azatriphenylene-based D-A-D-typed hole-transporting materials for perovskite solar cells with tunable energy levels and high mobility.SOLAR ENERGY,224,491-499.
MLA Sun, Zhu-Zhu,et al."Azatriphenylene-based D-A-D-typed hole-transporting materials for perovskite solar cells with tunable energy levels and high mobility".SOLAR ENERGY 224(2021):491-499.
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