Mejía Leopoldo, Renaud Nicolas, Franco Ignacio
Department of Chemistry, University of Rochester , Rochester, New York 14627-0216, United States.
Netherlands eScience Center , Science Park 140 1098 XG Amsterdam, The Netherlands.
J Phys Chem Lett. 2018 Feb 15;9(4):745-750. doi: 10.1021/acs.jpclett.7b03323. Epub 2018 Feb 1.
We demonstrate that conductance can act as a sensitive probe of conformational dynamics and electrode-molecule interactions during the equilibrium and nonequilibrium pulling of molecular junctions. To do so, we use a combination of classical molecular dynamics simulations and Landauer electron transport computations to investigate the conductance of a family of Au-alkanedithiol-Au junctions as they are mechanically elongated. The simulations show an overall decay of the conductance during pulling that is due to a decrease in the through-space electrode-molecule interactions, and that sensitivity depends on the electrode geometry. In addition, characteristic kinks induced by level alignment shifts (and to a lesser extent by quantum destructive interference) were also observed superimposed to the overall decay during pulling simulations. The latter effect depends on the variation of the molecular dihedral angles during pulling and therefore offers an efficient solution to experimentally monitor conformational dynamics at the single-molecule limit.
我们证明,在分子结的平衡和非平衡拉伸过程中,电导率可作为构象动力学和电极 - 分子相互作用的灵敏探针。为此,我们结合经典分子动力学模拟和朗道尔电子输运计算,研究了一系列Au - 链烷二硫醇 - Au结在机械拉伸时的电导率。模拟结果表明,拉伸过程中电导率总体呈衰减趋势,这是由于空间电极 - 分子相互作用的减弱所致,且灵敏度取决于电极几何形状。此外,在拉伸模拟过程中,还观察到由能级对齐变化(以及在较小程度上由量子相消干涉)引起的特征扭结叠加在总体衰减之上。后一种效应取决于拉伸过程中分子二面角的变化,因此为在单分子极限下实验监测构象动力学提供了一种有效的方法。