蒽
电子迁移率
材料科学
有机半导体
硅
水准点(测量)
晶体管
非晶硅
光电子学
无定形固体
纳米技术
光化学
化学
有机化学
电气工程
地质学
大地测量学
电压
工程类
晶体硅
作者
Wanhui Li,Cheng‐Zhuo Du,Xing‐Yu Chen,Lin Fu,Rong‐Rong Gao,Ze‐Fan Yao,Jie‐Yu Wang,Wenping Hu,Jian Pei,Xiaoye Wang
出处
期刊:Angewandte Chemie
[Wiley]
日期:2022-03-28
卷期号:61 (24): e202201464-e202201464
被引量:80
标识
DOI:10.1002/anie.202201464
摘要
Abstract Despite the remarkable synthetic accomplishments in creating diverse polycyclic aromatic hydrocarbons with B−N bonds (BN‐PAHs), their optoelectronic applications have been less exploited. Herein, we report the achievement of high‐mobility organic semiconductors based on existing BN‐PAHs through a “periphery engineering” strategy. Tetraphenyl‐ and diphenyl‐substituted BN‐anthracenes (TPBNA and DPBNA, respectively) are designed and synthesized. DPBNA exhibits the highest hole mobility of 1.3 cm 2 V −1 s −1 in organic field‐effect transistors, significantly outperforming TPBNA and all the reported BN‐PAHs. Remarkably, this is the first BN‐PAH with mobility over 1 cm 2 V −1 s −1 , which is a benchmark value for practical applications as compared with amorphous silicon. Furthermore, high‐performance phototransistors based on DPBNA are also demonstrated, implying the high potential of BN‐PAHs for optoelectronic applications when the “periphery engineering” strategy is implemented.
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