Rational design of novel star-shaped organic molecules as hole-transporting materials in perovskite solar cells

被引:0
|
作者
Qin, Ming [1 ]
Zhu, Wenjing [1 ]
Liu, Yue [1 ]
Zhou, Xin [1 ,2 ]
机构
[1] Dalian Univ, Coll Environm & Chem Engn, Dalian 116622, Liaoning, Peoples R China
[2] Liaoning Normal Univ, Interdisciplinary Res Ctr Biol & Chem, Dalian 116029, Liaoning, Peoples R China
基金
中国国家自然科学基金;
关键词
D-PI-A; DENSITY FUNCTIONALS; CHARGE-TRANSPORT; THERMOCHEMICAL KINETICS; METHOXY SUBSTITUENTS; CORRELATION-ENERGY; ABSOLUTE HARDNESS; EFFICIENT; HYBRID; DERIVATIVES;
D O I
10.1039/d4nj04106b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Designing highly efficient hole-transporting materials (HTMs) has recently become one of the effective approaches to increasing the power conversion efficiencies (PCEs) of perovskite solar cells (PSCs). Herein, twelve novel star-shaped organic small molecules (A1-F2) are simulated by using triphenylamine as the core group, introducing different electron-accepting pi-bridges and modulating terminal groups. The equilibrium geometries, electronic structures, optical properties, stabilities, solubilities, hole mobilities and adsorption features on the perovskite surface of the isolated molecules are calculated by using density functional theory (DFT) and time-dependent density functional theory (TDDFT) in combination with the Marcus charge transfer theory. Our theoretical results demonstrate that the electron-withdrawing ability of pi-linkers and the molecular planarity have an important influence on the various properties of the studied molecules. Compared with the reference HTMs, the designed molecules with benzothiadiazole-based and benzoxadiazole-based electron-accepting bridges, especially E1, F1, C2, D2, E2 and F2, exhibit more suitable frontier molecular orbital character, good optical properties, larger Stokes shifts, similar or better solubility, good stability and higher hole mobilities, and are expected to be potential HTM candidates to help create more efficient solar cells.
引用
收藏
页码:19828 / 19841
页数:14
相关论文
共 50 条
  • [31] Application of phenonaphthazine derivatives as hole-transporting materials for perovskite solar cells
    Liu, Xueyuan
    Zhang, Fei
    Liu, Xicheng
    Sun, Mengna
    Wang, Shirong
    Li, Dongmei
    Meng, Qingbo
    Li, Xianggao
    JOURNAL OF ENERGY CHEMISTRY, 2016, 25 (04) : 702 - 708
  • [32] A new binaphthol based hole-transporting materials for perovskite solar cells
    Zong, Xueping
    Qiao, Wenhua
    Chen, Yu
    Sun, Zhe
    Liang, Mao
    Xue, Song
    TETRAHEDRON, 2017, 73 (24) : 3398 - 3405
  • [33] Perovskite Solar Cells Based on Oligotriarylamine Hexaarylbenzene as Hole-Transporting Materials
    Shasti, Mona
    Volker, Sebastian F.
    Collavini, Silvia
    Valero, Silvia
    Ruiperez, Fernando
    Mortezaali, Abdollah
    Zakeeruddin, Shaik M.
    Gratzel, M.
    Hagfeldt, A.
    Luis Delgado, Juan
    ORGANIC LETTERS, 2019, 21 (09) : 3261 - 3264
  • [34] Selenophene-Based Hole-Transporting Materials for Perovskite Solar Cells
    Illicachi, Luis A.
    Urieta-Mora, Javier
    Momblona, Cristina
    Molina-Ontoria, Agustin
    Calbo, Joaquin
    Arago, Juan
    Insuasty, Braulio
    Ortiz, Alejandro
    Orti, Enrique
    Martin, Nazario
    Nazeeruddin, Mohammad Khaja
    CHEMPLUSCHEM, 2021, 86 (07): : 1006 - 1013
  • [35] Review of current progress in hole-transporting materials for perovskite solar cells
    Prerna Mahajan
    Bhavya Padha
    Sonali Verma
    Vinay Gupta
    Ram Datt
    Wing Chung Tsoi
    Soumitra Satapathi
    Sandeep Arya
    Journal of Energy Chemistry, 2022, 68 (05) : 330 - 386
  • [36] Application of phenonaphthazine derivatives as hole-transporting materials for perovskite solar cells
    Xueyuan Liu
    Fei Zhang
    Xicheng Liu
    Mengna Sun
    Shirong Wang
    Dongmei Li
    Qingbo Meng
    Xianggao Li
    Journal of Energy Chemistry , 2016, (04) : 702 - 708
  • [37] Review of current progress in hole-transporting materials for perovskite solar cells
    Mahajan, Prerna
    Padha, Bhavya
    Verma, Sonali
    Gupta, Vinay
    Datt, Ram
    Tsoi, Wing Chung
    Satapathi, Soumitra
    Arya, Sandeep
    JOURNAL OF ENERGY CHEMISTRY, 2022, 68 : 330 - 386
  • [38] Truxene-based Hole-transporting Materials for Perovskite Solar Cells
    Lin Lin-Lin
    Tu Yong-Guang
    Tang Chang-Quan
    Ma Yun-Long
    Chen Shan-Ci
    Yin Zhi-Gang
    Wei Jia-Jun
    Zheng Qing-Dong
    CHINESE JOURNAL OF STRUCTURAL CHEMISTRY, 2016, 35 (10) : 1517 - 1524
  • [39] Application of phenonaphthazine derivatives as hole-transporting materials for perovskite solar cells
    Xueyuan Liu
    Fei Zhang
    Xicheng Liu
    Mengna Sun
    Shirong Wang
    Dongmei Li
    Qingbo Meng
    Xianggao Li
    Journal of Energy Chemistry, 2016, 25 (04) : 702 - 708
  • [40] Truxene-based Hole-transporting Materials for Perovskite Solar Cells
    林琳琳
    涂用广
    汤昌泉
    马云龙
    陈善慈
    尹志刚
    魏佳骏
    郑庆东
    结构化学, 2016, 35 (10) : 1517 - 1524