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Comparable charge transport property based on S…S interactions with that of π-π stacking in a bis-fused tetrathiafulvalene compound 被引量:1

Comparable charge transport property based on S…S interactions with that of π-π stacking in a bis-fused tetrathiafulvalene compound
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摘要 Compact molecular packing with short π-π stacking and large π-overlap in organic semiconductors is desirable for efficient charge transport and high carrier mobility.Thus charge transport anisotropy along different directions is commonly observed in organic semiconductors.Interestingly,in this article,we found that comparable charge transport property were achieved based on the single crystals of a bis-fused tetrathiafulvalene derivative(EM-TTP) compound along two interaction directions,that is,the multiple strong S…S intermolecular interactions and the π-π stacking direction,with the measured electrical conductivity and hole mobility of 0.4 S cm^(-1),0.94 cm^2 V^(-1) s^(-1) and 0.2 S cm^(-1),0.65 cm2 V^(-1) s^(-1),respectively.This finding provides us a new molecular design concept for developing novel organic semiconductors with isotropic charge transport property through the synergistic effect of multiple intermolecular interactions(such as S…S interactions) and π-π stacking. Compact molecular packing with short π-π stacking and large π-overlap in organic semiconductors is desirable for efficient charge transport and high carrier mobility. Thus charge transport anisotropy along different directions is commonly observed in organic semiconductors. Interestingly, in this article, we found that comparable charge transport property were achieved based on the single crystals of a bis-fused tetrathiafulvalene derivative (EM-TTP) compound along two interaction directions, that is, the multiple strong S…S intermolecular interactions and the π-π stacking direction, with the measured electrical conductivity and hole mobility of 0.4 S cm-1, 0.94 cm2 V i s 1 and 0.2 S cm-1, 0.65 cm2 V-1 s-1, respectively. This finding provides us a new molecular design concept for developing novel organic semiconductors with isotropic charge transport property through the synergistic effect of multiple intermolecular interactions (such as π-π interactions) and π-π stacking.
出处 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第4期510-515,共6页 中国科学(化学英文版)
基金 supported by the Ministry of Science and Technology of China(2016YFB0401100,2013CB933403,2013CB933504) the National Natural Science Foundation of China(51633006,91433115,51222306,91222203,91233205,21472116) Chinese Academy of Sciences(XDB12030300) Beijing NOVA Programmer(Z131101000413038) Beijing Local College Innovation Team Improve Plan(IDHT20140512) Youth Innovation Promotion Association CAS
关键词 Π-Π堆积 四硫富瓦烯 电荷传输 输运特性 美国 类似 堆叠 分子间相互作用 bis-fused TTF derivative, single crystal, electrical conductivity, hole carrier mobility
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