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Chinese Academy of Sciences Institutional Repositories Grid
Structural Engineering of FDT toward Promising Spiro-Typed Hole-Transporting Materials: Promoting the Hole Transport and Stabilizing the HOMO Levels

文献类型:期刊论文

作者Sun, Zhu-Zhu1; Yang, Jie2; Ding, Wei-Lu3; Liu, Jing-Lun1; Xu, Xing-Lei1
刊名Journal of Physical Chemistry C
出版日期2022-07-21
卷号126期号:28页码:11529-11536
关键词Band structure - Energy policy - Hole mobility - Molecular orbitals - Perovskite - Red Shift
ISSN号19327447
DOI10.1021/acs.jpcc.2c03878
英文摘要Design of a new spiro-typed core structure is one of the most important approaches for developing highly efficient hole-transporting materials (HTMs). In this work, the strategies of modifying with O/S heteroatoms and introducing a helical 蟺-linker are evaluated based on the typical FDT molecule. Theoretical calculations show that all the highest occupied molecular orbitals (HOMOs) and the lowest unoccupied molecular orbitals (LUMOs) of the studied HTMs are matched well with the energy band structure of perovskite, and the HOMO levels display a gradually negative-shifted trend from the FDT to SM30, which means that the favorable hole extraction and the easy interfacial energy regulation can be anticipated. Compared to the light absorption of the FDT, the absorption spectra of new tailored HTMs are slightly red-shifted. More importantly, our results indicate that introducing a helical 蟺-linker and modification with heteroatoms in the spiro-typed core can be the effective methods to promote the hole transport ability of HTMs. Both the methods can effectually heighten the crystal stacking and intermolecular electronic couplings and further facilitate the hole transport of HTMs. Furthermore, the large Stokes shifts and the better solubility are also displayed for the newly tailored HTMs. In sum, this work provides useful insights for the design of highly efficient HTMs, and three new spiro-typed HTMs are proposed. 漏 2022 American Chemical Society. All rights reserved.
学科主题Light Absorption
项目编号This work is financially supported by the Doctoral Scientific Research Foundation of Heze University (XY21BS33) and also supported by the National Natural Science Foundation of China (22008238).
出版者American Chemical Society
源URL[http://ir.ipe.ac.cn/handle/122111/61289]  
作者单位1.College of Physics and Electronic Engineering, Heze University, Heze; 274015, China
2.Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Key Laboratory of Cluster Science of Ministry of Education, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing; 100081, China
3.Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering, State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing; 100190, China
推荐引用方式
GB/T 7714
Sun, Zhu-Zhu,Yang, Jie,Ding, Wei-Lu,et al. Structural Engineering of FDT toward Promising Spiro-Typed Hole-Transporting Materials: Promoting the Hole Transport and Stabilizing the HOMO Levels[J]. Journal of Physical Chemistry C,2022,126(28):11529-11536.
APA Sun, Zhu-Zhu,Yang, Jie,Ding, Wei-Lu,Liu, Jing-Lun,&Xu, Xing-Lei.(2022).Structural Engineering of FDT toward Promising Spiro-Typed Hole-Transporting Materials: Promoting the Hole Transport and Stabilizing the HOMO Levels.Journal of Physical Chemistry C,126(28),11529-11536.
MLA Sun, Zhu-Zhu,et al."Structural Engineering of FDT toward Promising Spiro-Typed Hole-Transporting Materials: Promoting the Hole Transport and Stabilizing the HOMO Levels".Journal of Physical Chemistry C 126.28(2022):11529-11536.

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