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作 者:Mingliang Zhu Yunlong Guo Yunqi Liu
机构地区:[1]Beijing National Laboratory for Molecular Sciences,Organic Solids Laboratory,Institute of Chemistry,Chinese Academy of Sciences,China [2]School of Chemical Sciences,University of Chinese Academy of Sciences,China
出 处:《National Science Review》2024年第3期10-13,共4页国家科学评论(英文版)
基 金:supported by the National Key R&D Program of China(2018YFA0703200);the National Natural Science Foundation of China(61890940 and U22A6002);the Strategic Priority Research Program of the Chinese Academy of Sciences(CAS)(XDB30000000);the CAS Project for Young Scientists in Basic Research(YSBR-053);the CAS-Croucher Scheme for Joint Laboratories,Lu Jiaxi international team(GJTD-2020-02);the CAS Cooperation Project(121111KYSB20200036).
摘 要:The discovery of conductive poly-acetylene has initiated interdisciplinary research into condensed matter physics and synthetic chemistry in organic electronics.Unlike their inorganic and small-molecule counterparts,polymer semiconductors possess the inherent advantages of facile solution processing,large-area manufacturing,excellent mechanical strength and intrinsic flexibility.To date,they have delivered over-the-benchmark mobility of 10 cm^(2) V^(-1) s^(-1),while device technology and control-lable doping/blending further enable performance enhancement and ambient stability[1].
关 键 词:SEMICONDUCTORS POLYMER initiated
分 类 号:TN322.8[电子电信—物理电子学] TQ317[化学工程—高聚物工业]
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