Tetraphenylethylene-Arylamine Derivatives as Hole Transporting Materials for Perovskite Solar Cells

被引:23
作者
Zhang, Xianfu [1 ]
Liu, Xuepeng [1 ]
Ghadari, Rahim [2 ]
Li, Maohui [1 ]
Zhou, Zi'an [1 ]
Ding, Yong [1 ]
Cai, Molang [1 ]
Dai, Songyuan [1 ]
机构
[1] North China Elect Power Univ, Beijing Key Lab Novel Thin Film Solar Cells, Beijing 102206, Peoples R China
[2] Univ Tabriz, Fac Chem, Dept Organ & Biochem, Computat Chem Lab, Tabriz 5166616471, Iran
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
hole transporting materials; fused tetraphenylethylene; 9,9 '-bifluorenylidene; dibenzo[g; p]chrysene; substitution position; perovskite solar cells; HIGHLY EFFICIENT; TRIPHENYLAMINE;
D O I
10.1021/acsami.1c01606
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
A series of hole transporting materials (HTMs) with fused tetraphenylethylene cores (9,9'-bifluorenylidene and dibenzo[g,p]-chrysene) as well as different substitution positions of arylamine side arms has been designed and synthesized. A reference HTM with a nonfused tetraphenylethylene core is also prepared for a comparative study. It is noted that fused tetraphenylethylene molecules show a bathochromic spectral shift, electronegative character, and lower reorganization energies than the non-fused ones. Furthermore, the molecules with side arms located on the meta-position on the tetraphenylethylene core in terms of a double bond exhibit a deeper highest occupied molecular orbital level than those of the para-position-based ones whether tetraphenylethylene is fused or not. Moreover, the reorganization energies of fused meta-position-based HTMs are lower than those of para-position-based HTMs. Fused tetraphenylethylene HTMs own a better hole-extraction capability than the non-fused ones. When used in perovskite solar cells, all devices with fused tetraphenylethylene HTMs display better performance than those of the non-fused ones. The HTMs based on dibenzo[g,p]chrysene exhibit better performance than those of bifluorenylidene. Moreover, the devices with HTMs with side arms located on the meta-position on the tetraphenylethylene core display higher power conversion efficiency than those of the para-position-based ones. The results give some new insight and reference to develop ideal HTMs for perovskite solar cells.
引用
收藏
页码:12322 / 12330
页数:9
相关论文
共 56 条
[31]   Influence of π-linker on triphenylamine-based hole transporting materials in perovskite solar cells [J].
Liu, Xuepeng ;
Kong, Fantai ;
Guo, Fuling ;
Cheng, Tai ;
Chen, Wangchao ;
Yu, Ting ;
Chen, Jian ;
Tan, Zhan'ao ;
Dai, Songyuan .
DYES AND PIGMENTS, 2017, 139 :129-135
[32]   Introducing ammonium salt into hole transporting materials for perovskite solar cells [J].
Ma, Shuang ;
Liu, Xuepeng ;
Zhang, Xianfu ;
Ghadari, Rahim ;
Ding, Yong ;
Cai, Molang ;
Dai, Songyuan .
CHEMICAL COMMUNICATIONS, 2020, 56 (92) :14471-14474
[33]   Dithieno[3,2-b:2′,3′-d]pyrrole-based hole transport materials for perovskite solar cells with efficiencies over 18% [J].
Mabrouk, Sally ;
Zhang, Mengmeng ;
Wang, Zhihui ;
Liang, Mao ;
Bahrami, Behzad ;
Wu, Yungen ;
Wu, Jinhua ;
Qiao, Qiquan ;
Yang, Shangfeng .
JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (17) :7950-7958
[34]   Aggregation-Induced Emission: Together We Shine, United We Soar! [J].
Mei, Ju ;
Leung, Nelson L. C. ;
Kwok, Ryan T. K. ;
Lam, Jacky W. Y. ;
Tang, Ben Zhong .
CHEMICAL REVIEWS, 2015, 115 (21) :11718-11940
[35]   Donor-π-donor type hole transporting materials: marked π-bridge effects on optoelectronic properties, solid-state structure, and perovskite solar cell efficiency [J].
Paek, S. ;
Zimmermann, I. ;
Gao, P. ;
Gratia, P. ;
Rakstys, K. ;
Grancini, G. ;
Nazeeruddin, Mohammad Khaja ;
Rub, Malik Abdul ;
Kosa, Samia A. ;
Alamry, Khalid A. ;
Asiri, Abdullah M. .
CHEMICAL SCIENCE, 2016, 7 (09) :6068-6075
[36]   New Generation Hole Transporting Materials for Perovskite Solar Cells: Amide-Based Small-Molecules with Nonconjugated Backbones [J].
Petrus, Michiel L. ;
Schutt, Kelly ;
Sirtl, Maximilian T. ;
Hutter, Eline M. ;
Closs, Anna C. ;
Ball, James M. ;
Bijleveld, Johan C. ;
Petrozza, Annamaria ;
Bein, Thomas ;
Dingemans, Theo J. ;
Savenije, Tom J. ;
Snaith, Henry ;
Docampo, Pablo .
ADVANCED ENERGY MATERIALS, 2018, 8 (32)
[37]   Amorphous hole-transporting layer in slot-die coated perovskite solar cells [J].
Qin, Tianshi ;
Huang, Wenchao ;
Kim, Jueng-Eun ;
Vak, Doojin ;
Forsyth, Craig ;
McNeill, Christopher R. ;
Cheng, Yi-Bing .
NANO ENERGY, 2017, 31 :210-217
[38]   Highly Efficient Perovskite Solar Cells Employing an Easily Attainable Bifluorenylidene-Based Hole-Transporting Material [J].
Rakstys, Kasparas ;
Saliba, Michael ;
Gao, Peng ;
Gratia, Paul ;
Kamarauskas, Egidijus ;
Paek, Sanghyun ;
Jankauskas, Vygintas ;
Nazeeruddin, Mohammad Khaja .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (26) :7464-7468
[39]   Double-Helicene-Based Hole-Transporter for Perovskite Solar Cells with 22% Efficiency and Operation Durability [J].
Ren, Ming ;
Wang, Jianan ;
Xie, Xinrui ;
Zhang, Jing ;
Wang, Peng .
ACS ENERGY LETTERS, 2019, 4 (11) :2683-2688
[40]   Dopant-Free Hole Transporting Materials for Perovskite Solar Cells [J].
Rezaee, Ehsan ;
Liu, Xiaoyuan ;
Hu, Qikun ;
Dong, Lei ;
Chen, Qian ;
Pan, Jia-Hong ;
Xu, Zong-Xiang .
SOLAR RRL, 2018, 2 (11)