化学
四硫富瓦烯
氧化还原
衍生工具(金融)
组合化学
无机化学
有机化学
分子
金融经济学
经济
作者
Zheng-Zhen Tang,Yi-Gang Weng,Wen‐Yu Yin,Miao Jiang,Qin‐Yu Zhu,Jie Dai
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2019-11-11
卷期号:58 (23): 15824-15831
被引量:4
标识
DOI:10.1021/acs.inorgchem.9b02168
摘要
Inorganic CuSCN and organic tetrathiafulvalene derivatives (TTFs) have been exploited as hole-transport materials (HTM) in hybrid perovskite solar cells. To develop new HTM, we herein report two hybrid materials incorporating redox-active TTFs with CuSCN framework (TTFs-CuSCN). Single-crystal analysis showed that compound [Cu2(py-TTF-py)(SCN)2] (1) is three-dimensional (3D) and compound [Cu(py-TTF-py)(SCN)] (2) is two-dimensional (2D) (py-TTF-py = 2,6-bis(4'-pyridyl)tetrathiafulvalene). There are covalent coordination interactions between CuSCN and py-TTF-py and short S···S contacts between the py-TTF-py ligands for both compounds. Besides, C···S contacts exist between py-TTF-py ligands of the neighboring 2D networks in 2, which facilitate the charge transfer and supply efficient multidimensional pathways for carrier migration. As a result, 2 presented better semiconductor performance in comparison with that of 1. The performance of 2 related to the HTMs could be significantly improved by modulating the electronic state of the TTFs-CuSCN framework via oxidative doping. The iodine-doped 2D material (2-I2) gives the most excellent conductivity and carrier mobility, which might be a potential new HTM.
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