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首页> 外文期刊>Chemistry: A European journal >Thiepin-Fused Heteroacenes: Simple Synthesis, Unusual Structure, and Semiconductors with Less Anisotropic Behavior
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Thiepin-Fused Heteroacenes: Simple Synthesis, Unusual Structure, and Semiconductors with Less Anisotropic Behavior

机译:Thiepin熔融杂蒽:简单合成,异常结构和具有较少各向异性行为的半导体

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摘要

The simple one-pot syntheses of sulfur-rich thiepin-fused heteroacences with an alkylidene-fluorene framework, THA1 and THA6 (thiepin-fused heteroacene 1 or 6, in which the thiepin is conjugated at both ortho positions with S-CH_3 or S-C_6H_(13), respectively), is reported. Based on electrochemical studies and theoretical calculations, their LUMO energies are relatively low (-3.26 eV), and their HOMO and HOMO-1 orbitals are nearly degenerate. The thiepin ring contributes mainly to HOMO-1 and LUMO orbitals, however, HOMO orbitals dominantly reside on thienoacence rings. Within the crystal of THA1, the molecules adopt a herringbone arrangement and multiple intermolecular interactions lead to the formation of a 2D network. Interestingly, THA6 shows totally different intermolecular arrangements. Organic fieldeffect transistor (OFET) devices show both compounds exhibiting p-type semiconducting behavior. Thin films or microcrystals of THA1 possess relatively high hole mobility. Moreover, the mobilities of the microcrystal of THA1 along three directions are in the same order, thus the hole-carrier transporting within the hexagonal-plane of microcrystal of THA1 exhibits less anisotropic behavior. In comparison, both thin films and microrods of THA6 show low hole mobilities. This agrees well with the intermolecular arrangements and interactions within crystal of THA6. Further theoretical calculations reveal that significant intermolecular electronic coupling among HOMO-1 orbitals and sulfur atoms play an important role in intermolecular electronic coupling for THA1.
机译:具有亚烷基芴骨架THA1和THA6的富硫噻吩-稠合杂原子的简单一锅合成(噻吩-稠合杂芳烃1或6,其中噻吩在两个邻位均与S-CH_3或S-共轭分别报告C_6H_(13))。根据电化学研究和理论计算,它们的LUMO能量相对较低(-3.26 eV),并且它们的HOMO和HOMO-1轨道几乎简并。噻吩环主要是对HOMO-1和LUMO轨道的贡献,但是,HOMO轨道主要位于硫原子性环上。在THA1晶体内,分子采用人字形排列,并且多种分子间相互作用导致2D网络的形成。有趣的是,THA6显示出完全不同的分子间排列。有机场效应晶体管(OFET)器件显示两种化合物均显示p型半导体行为。 THA1的薄膜或微晶具有较高的空穴迁移率。此外,THA1的微晶在三个方向上的迁移率是相同的,因此空穴载流子在THA1的微晶六边形平面内的传输表现出较小的各向异性。相比之下,THA6的薄膜和微棒均显示出低空穴迁移率。这与THA6晶体内的分子间排列和相互作用非常吻合。进一步的理论计算表明,HOMO-1轨道与硫原子之间的重要分子间电子偶联在THA1的分子间电子偶联中起重要作用。

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