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首页> 外文期刊>The Journal of Chemical Physics >Understanding the inelastic electron-tunneling spectra of alkanedithiols on gold
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Understanding the inelastic electron-tunneling spectra of alkanedithiols on gold

机译:了解金上链烷二硫醇的非弹性电子隧道光谱

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We present results for a simulated inelastic electron-tunneling spectra (IETS) from calculations using the "gDFTB" code. The geometric and electronic structure is obtained from calculations using a local-basis density-functional scheme, and a nonequilibrium Green's function formalism is employed to deal with the transport aspects of the problem. The calculated spectrum of octanedithiol on gold(111) shows good agreement with experimental results and suggests further details in the assignment of such spectra. We show that some low-energy peaks, unassigned in the experimental spectrum, occur in a region where a number of molecular modes are predicted to be active, suggesting that these modes are the cause of the peaks rather than a matrix signal, as previously postulated. The simulations also reveal the qualitative nature of the processes dominating IETS. It is highly sensitive only to the vibrational motions that occur in the regions of the molecule where there is electron density in the low-voltage conduction channel. This result is illustrated with an examination of the predicted variation of IETS with binding site and alkane chain length. (c) 2006 American Institute of Physics.
机译:我们提供了使用“ gDFTB”代码通过计算得出的模拟非弹性电子隧道谱(IETS)的结果。几何和电子结构是通过使用局部基密度函数方案进行计算而获得的,并且采用非平衡格林函数形式来解决问题的运输问题。计算出的金刚烷醇在金(111)上的光谱与实验结果显示出良好的一致性,并为此类光谱的分配提供了更多细节。我们表明,一些低能峰在实验光谱中未分配,出现在一些分子模式被预测为活跃的区域,这表明这些模式是导致峰的原因,而不是先前假设的矩阵信号。模拟还揭示了主导IETS的过程的定性本质。它仅对在低压传导通道中存在电子密度的分子区域中发生的振动运动高度敏感。通过检查IETS的预测变异随结合位点和烷烃链长的变化说明了这一结果。 (c)2006年美国物理研究所。

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