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Spin transport properties of triarylamine-based nanowires

机译:三芳基胺基纳米线的自旋输运性质

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Triarylamine-derivatives can self-assemble upon light irradiation in one-dimensional nanowires with remarkable hole transport properties. We use a combination of density functional theory and Monte Carlo simulations to predict the nanowires spin-diffusion length. The orbital nature of the nanowires valence band, namely a singlet π-like band localised on N, suggests that hyperfine coupling may be weak and that spin-orbit interaction is the primary source of intrinsic spin relaxation. Thus, we construct a model where the spin-orbit interaction mixes the spins of the valence band with that of three degenerate lower valence bands of sp~2 nature. The model includes also electron-phonon interaction with a single longitudinal mode. We find a room temperature spin-diffusion length of the order of 100 nm, which increases to 300 nm at 200 K. Our results indicate that triarylamine-based nanowires are attractive organic semiconductors for spintronics applications.
机译:三芳基胺衍生物可以在光辐射下以具有显着的空穴传输性质的一维纳米线自组装。我们结合使用密度泛函理论和蒙特卡洛模拟来预测纳米线的自旋扩散长度。纳米线价带的轨道性质(即位于N上的单峰π状带)表明超精细耦合可能很弱,并且自旋-轨道相互作用是内在自旋弛豫的主要来源。因此,我们构建了一个模型,其中自旋轨道相互作用将价带的自旋与sp〜2性质的三个简并的较低价带的自旋混合。该模型还包括具有单个纵向模式的电子-声子相互作用。我们发现室温自旋扩散长度约为100 nm,在200 K时可增加至300 nm。我们的结果表明,基于三芳基胺的纳米线是自旋电子学应用中有吸引力的有机半导体。

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  • 来源
    《Chemical Communications》 |2014年第50期|6626-6629|共4页
  • 作者单位

    School of Physics, AMBER and CRANN Institute, Trinity College, Dublin 2, Ireland;

    School of Physics, AMBER and CRANN Institute, Trinity College, Dublin 2, Ireland;

    School of Physics, AMBER and CRANN Institute, Trinity College, Dublin 2, Ireland;

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  • 入库时间 2022-08-17 13:15:59

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