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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Theoretical study on the charge transport in single crystals of TCNQ, F-2-TCNQ and F-4-TCNQ
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Theoretical study on the charge transport in single crystals of TCNQ, F-2-TCNQ and F-4-TCNQ

机译:TCNQ,F-2-TCNQ和F-4-TCNQ单晶电荷输送的理论研究

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摘要

2,5-Difluoro-7,7,8,8-tetracyanoquinodimethane (F-2-TCNQ) was recently reported to display excellent electron transport properties in single crystal field-effect transistors (FETs). Its carrier mobility can reach 25 cm(2) V-1 s(-1) in devices. However, its counterparts TCNQ and F-4-TCNQ (tetrafluoro-7,7,8,8-tetracyanoquinodimethane) do not exhibit the same highly efficient behavior. To better understand this significant difference in charge carrier mobility, a multiscale approach combining semiclassical Marcus hopping theory, a quantum nuclear enabled hopping model and molecular dynamics simulations was performed to assess the electron mobilities of the F-n-TCNQ (n = 0, 2, 4) systems in this work. The results indicated that the outstanding electron transport behavior of F2-TCNQ arises from its effective 3D charge carrier percolation network due to its special packing motif and the nuclear tunneling effect. Moreover, the poor transport properties of TCNQ and F-4-TCNQ stem from their invalid packing and strong thermal disorder. It was found that Marcus theory underestimated the mobilities for all the systems, while the quantum model with the nuclear tunneling effect provided reasonable results compared to experiments. Moreover, the band-like transport behavior of F-2-TCNQ was well described by the quantum nuclear enabled hopping model. In addition, quantum theory of atoms in molecules (QTAIM) analysis and symmetry-adapted perturbation theory (SAPT) were used to characterize the intermolecular interactions in TCNQ, F-2-TCNQ and F-4-TCNQ crystals. A primary understanding of various noncovalent interaction responses for crystal formation is crucial to understand the structure-property relationships in organic molecular materials.
机译:最近据报道,2,5-二氟-7,7,8,8-四环喹啉二甲烷(F-2-TCNQ)在单晶场效应晶体管(FET)中显示出优异的电子传输性能。其载流动性可以在设备中达到25cm(2)V-1 S(-1)。然而,其对应于TCNQ和F-4-TCNQ(四氟-7,7,8,8-四环喹甲烷)不表现出相同的高效行为。为了更好地理解电荷载流子移动性的显着差异,进行了多尺度方法,组合半透明的Marcus跳跃理论,量子核化跳跃模型和分子动力学模拟,以评估FN-TCNQ的电子迁移率(n = 0,2,4 )在这项工作中的系统。结果表明,由于其特殊包装图案和核隧道效应,其有效的3D电荷载体渗透网络出现了F2-TCNQ的出色电子传输行为。此外,TCNQ和F-4-TCNQ的差的运输特性源于无效包装和强烈的热紊乱。发现马库斯理论低估了所有系统的移动性,而具有核隧道效应的量子模型与实验相比提供了合理的结果。此外,通过量子核化的跳跃模型很好地描述了F-2-TCNQ的带状传输行为。此外,使用分子(Qtaim)分析和对称适应的扰动理论(SAPT)中的量子原子理论用于表征TCNQ,F-2-TCNQ和F-4-TCNQ晶体的分子间相互作用。对晶体形成的各种非共价相互作用反应的主要理解对于了解有机分子材料中的结构性质关系至关重要。

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    Jilin Univ Inst Theoret Chem Lab Theoret &

    Computat Chem Changchun 130023 Jilin Peoples R China;

    Jilin Univ Inst Theoret Chem Lab Theoret &

    Computat Chem Changchun 130023 Jilin Peoples R China;

    Jilin Univ Inst Theoret Chem Lab Theoret &

    Computat Chem Changchun 130023 Jilin Peoples R China;

    Jilin Univ Inst Theoret Chem Lab Theoret &

    Computat Chem Changchun 130023 Jilin Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理学 ; 化学 ;
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