Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, Tennessee 37212, USA.
ACS Nano. 2012 Mar 27;6(3):2779-89. doi: 10.1021/nn300276m. Epub 2012 Feb 23.
Using an updated simulation tool, we examine molecular junctions composed of benzene-1,4-dithiolate bonded between gold nanotips, focusing on the importance of environmental factors and interelectrode distance on the formation and structure of bridged molecules. We investigate the complex relationship between monolayer density and tip separation, finding that the formation of multimolecule junctions is favored at low monolayer density, while single-molecule junctions are favored at high density. We demonstrate that tip geometry and monolayer interactions, two factors that are often neglected in simulation, affect the bonding geometry and tilt angle of bridged molecules. We further show that the structures of bridged molecules at 298 and 77 K are similar.
利用经过更新的模拟工具,我们研究了由金纳米尖端之间的苯-1,4-二硫醇键合而成的分子结,重点关注环境因素和电极间距离对桥连分子形成和结构的重要性。我们研究了单层密度和尖端分离之间的复杂关系,发现低单层密度有利于多分子结的形成,而高密度有利于单分子结的形成。我们证明了尖端几何形状和单层相互作用这两个在模拟中经常被忽略的因素会影响桥连分子的键合几何形状和倾斜角度。我们进一步表明,298 和 77 K 下桥连分子的结构相似。