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
标识
DOI:10.1002/anie.202201464
摘要
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 cm2 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 cm2 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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