Department of Physics, Budapest University of Technology and Economics and MTA-BME Condensed Matter Research Group, Budafoki ut 8, 1111 Budapest, Hungary.
Beilstein J Nanotechnol. 2015 Jun 19;6:1369-76. doi: 10.3762/bjnano.6.141. eCollection 2015.
We investigate the formation and evolution of Au-CO single-molecule break junctions. The conductance histogram exhibits two distinct molecular configurations, which are further investigated by a combined statistical analysis. According to conditional histogram and correlation analysis these molecular configurations show strong anticorrelations with each other and with pure Au monoatomic junctions and atomic chains. We identify molecular precursor configurations with somewhat higher conductance, which are formed prior to single-molecule junctions. According to detailed length analysis two distinct types of molecule-affected chain-formation processes are observed, and we compare these results to former theoretical calculations considering bridge- and atop-type molecular configurations where the latter has reduced conductance due to destructive Fano interference.
我们研究了 Au-CO 单分子断裂结的形成和演化。电导直方图显示出两种不同的分子构型,进一步通过联合统计分析进行了研究。根据条件直方图和相关分析,这些分子构型彼此之间以及与纯 Au 单原子结和原子链之间存在强烈的反相关关系。我们确定了具有稍高电导的分子前体构型,这些构型是在单分子结形成之前形成的。根据详细的长度分析,观察到两种不同类型的受分子影响的链形成过程,我们将这些结果与考虑桥和 atop 型分子构型的前理论计算进行了比较,其中后者由于破坏性的 Fano 干涉而导致电导降低。