Asymmetric Fluorinated Cyclopenta[2,1-b:3,4-b']Dithiophene-Based Hole-Transporting Materials for Perovskite Solar Cell.

IF 3.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Kun-Mu Lee, Jui-Ting Pan, Wen-Tzu Chen, Chia-Hui Lin, Zhe-Wei Wang, Wei-Hao Chiu, Wei-Chen Chu, Ya-Ho Chang, Jen-Fu Hsu, Sie-Rong Li, Shih-I Lu, Hsiao-Chi Hsieh, Chih-Wei Hu, Chih-Hung Chen, Jian-Ming Chiu, Kang-Ling Liau, Gao Chen, Yun-Shuo Liu, Shih-Sheng Sun, Yan-Duo Lin
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引用次数: 0

Abstract

A series of asymmetric hole-transporting materials (HTMs) based on cyclopenta[2,1-b;3,4-b']dithiophene cores tethered with p-methoxytriphenylamines donor units with or without incorporated fluorine atoms were rationally designed, synthesized, and employed in perovskite solar cells (PSCs). A comprehensive comparison is conducted encompassing the absorption spectra, electrochemical characteristics, thermal stability, density functional theory (DFT) calculations, hole mobility, and surface morphology, as revealed by scanning electron microscopy (SEM) and atomic force microscopy (AFM), steady-state and time-resolved photoluminescence measurements, water contact angle analyzes, and photovoltaic parameters of the PSCs. The fluorinated HTMs, P-oF and P-mF, demonstrated enhanced hole mobility and more efficient charge extraction at the perovskite/HTM interface compared to their non-fluorinated counterpart. Consequently, PSCs employing P-oF and P-mF achieved power conversion efficiencies (PCEs) of 21.52% and 19.78%, respectively, with negligible hysteresis, outperforming devices based on P-H, which exhibited a PCE of 17.05%. Moreover, the operational stability of the device incorporating P-series as the HTM exceeded that of the PSCs employing the benchmark material of spiro-OMeTAD. The findings presented herein underscore the facile accessibility and potential of asymmetric compounds as alternative HTMs for PSCs. The results provide valuable insights and serve as a reference for the development of optimal HTMs for PSCs.

不对称氟化环五[2,1-b:3,4-b']二噻吩基钙钛矿太阳能电池的空穴传输材料。
合理设计、合成了一系列基于环五[2,1-b;3,4-b']二噻吩核系接对甲氧基三苯胺供体单元(含或不含氟原子)的不对称空穴传输材料(HTMs),并将其应用于钙钛矿太阳能电池(PSCs)中。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)、稳态和时间分辨光致发光测量、水接触角分析和光伏参数,对PSCs的吸收光谱、电化学特性、热稳定性、密度泛函理论(DFT)计算、空穴迁移率和表面形貌进行了全面的比较。与未氟化的HTMs相比,氟化的HTMs (P-oF和P-mF)在钙钛矿/HTM界面上表现出更强的空穴迁移率和更有效的电荷提取。因此,采用P-oF和P-mF的PSCs分别实现了21.52%和19.78%的功率转换效率(PCE),且迟滞可以忽略不计,优于基于P-H的器件,PCE为17.05%。此外,采用p系列作为HTM的器件的运行稳定性优于采用spiro-OMeTAD基准材料的psc。本文的研究结果强调了不对称化合物作为PSCs替代HTMs的易得性和潜力。研究结果为PSCs优化HTMs的开发提供了有价值的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemistry - An Asian Journal
Chemistry - An Asian Journal 化学-化学综合
CiteScore
7.00
自引率
2.40%
发文量
535
审稿时长
1.3 months
期刊介绍: Chemistry—An Asian Journal is an international high-impact journal for chemistry in its broadest sense. The journal covers all aspects of chemistry from biochemistry through organic and inorganic chemistry to physical chemistry, including interdisciplinary topics. Chemistry—An Asian Journal publishes Full Papers, Communications, and Focus Reviews. A professional editorial team headed by Dr. Theresa Kueckmann and an Editorial Board (headed by Professor Susumu Kitagawa) ensure the highest quality of the peer-review process, the contents and the production of the journal. Chemistry—An Asian Journal is published on behalf of the Asian Chemical Editorial Society (ACES), an association of numerous Asian chemical societies, and supported by the Gesellschaft Deutscher Chemiker (GDCh, German Chemical Society), ChemPubSoc Europe, and the Federation of Asian Chemical Societies (FACS).
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