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作 者:Xixia Yu Lei Zheng Jinfeng Li Lu Wang Jiangli Han Huayi Chen Xiaotao Zhang Wenping Hu
机构地区:[1]Tianjin Key Laboratory of Molecular Optoelectronic Science, Department of Chemistry, Tianjin University [2]Shen Ma Engineering Plastics Co.Ltd.
出 处:《Science China Chemistry》2019年第2期251-255,共5页中国科学(化学英文版)
基 金:supported by the National Key R&D Program (2017YFA0204503, 2016YFB0401100);the National Natural Science Foundation of China (51703159, 51633006, 51733004);the Strategic Priority Research Program (XDB12030300) of the Chinese Academy of Science
摘 要:An asymmetric anthracene derivative(4-HDPA) was designed and synthesized. With the optimization of proper scenario of fabrication process, top-contact thin film devices based on 4-HDPA exhibit mobility as high as 3.59 cm^2 V^(–1) s^(–1), while its singlecrystal devices exhibit mobility as high as 5.12 cm^2 V^(–1) s^(–1), which is higher than the symmetrical counterpart of 4-HDPA in both single-crystal and thin film devices.An asymmetric anthracene derivative(4-HDPA) was designed and synthesized. With the optimization of proper scenario of fabrication process, top-contact thin film devices based on 4-HDPA exhibit mobility as high as 3.59 cm^2 V^(–1) s^(–1), while its singlecrystal devices exhibit mobility as high as 5.12 cm^2 V^(–1) s^(–1), which is higher than the symmetrical counterpart of 4-HDPA in both single-crystal and thin film devices.
关 键 词:organic FIELD-EFFECT TRANSISTOR (OFET) ASYMMETRIC anthracene DERIVATIVE MOBILITY
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