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首页> 外文期刊>The Journal of Chemical Physics >Scanning tunneling spectroscopy simulations of poly(3-dodecylthiophene) chains adsorbed on highly oriented pyrolytic graphite
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Scanning tunneling spectroscopy simulations of poly(3-dodecylthiophene) chains adsorbed on highly oriented pyrolytic graphite

机译:高定向热解石墨上吸附的聚(3-十二烷基噻吩)链的扫描隧道光谱模拟

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摘要

We report on a hybrid scheme to perform efficient and accurate simulations of scanning tunneling spectroscopy (STS) of molecules weakly bonded to surfaces. Calculations are based on a tight binding (TB) technique, including a self-consistent calculation of the electronic structure of the molecule, to predict STS conductance spectra. The use of a local basis makes our model easily applicable to systems with several hundreds of atoms. We performed first-principles density-functional calculations to extract the geometrical and electronic properties of the system. In this way, we can include, in the TB scheme, the effects of structural relaxation upon adsorption on the electronic structure of the molecule. This approach is applied to the study of regioregular poly(3-dodecylthiophene) polymer chains adsorbed on highly oriented pyrolytic graphite. Results of spectroscopic calculations are discussed and compared with recently obtained experimental data.
机译:我们报告了一种混合方案,以执行高效且准确地模拟弱结合到表面的分子的扫描隧道光谱(STS)。计算基于紧密结合(TB)技术,包括分子电子结构的自洽计算,以预测STS电导谱。使用局部基准使我们的模型可以轻松地应用于具有数百个原子的系统。我们进行了第一性原理密度函数计算,以提取系统的几何和电子特性。通过这种方式,我们可以在TB方案中包括结构弛豫对分子电子结构吸附的影响。该方法适用于吸附在高度定向的热解石墨上的区域规则的聚(3-十二烷基噻吩)聚合物链的研究。讨论了光谱计算的结果,并将其与最近获得的实验数据进行了比较。

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