Department of Physics, Budapest University of Technology and Economics and Condensed Matter Research Group of the Hungarian Academy of Sciences, Budafoki ut 8, 1111 Budapest, Hungary.
Nanoscale. 2012 Aug 7;4(15):4739-45. doi: 10.1039/c2nr30832k. Epub 2012 Jun 29.
The interaction of carbon monoxide molecules with atomic-scale platinum nanojunctions is investigated by low temperature mechanically controllable break junction experiments. Combining plateau length analysis, two-dimensional conductance-displacement histograms and conditional correlation analysis a comprehensive microscopic picture is proposed about the formation and evolution of Pt-CO-Pt single-molecule configurations. Our analysis implies that before pure Pt monoatomic chains are formed a CO molecule infiltrates the junction, first in a configuration that is perpendicular to the contact axis. This molecular junction is strong enough to pull a monoatomic platinum chain with the molecule being incorporated in the chain. Along the chain formation the molecule can either stay in the perpendicular configuration, or rotate to a parallel configuration. The evolution of the single-molecule configurations along the junction displacement shows quantitative agreement with theoretical predictions, justifying the interpretation in terms of perpendicular and parallel molecular alignment. Our analysis demonstrates that the combination of two-dimensional conductance-displacement histograms with conditional correlation analysis is a useful tool to analyze separately fundamentally different types of junction trajectories in single molecule break junction experiments.
通过低温机械可控断接实验研究了一氧化碳分子与原子尺度铂纳米结的相互作用。通过平台长度分析、二维电导-位移直方图和条件相关分析,提出了关于 Pt-CO-Pt 单分子构型形成和演化的综合微观图像。我们的分析表明,在形成纯 Pt 单原子链之前,一个 CO 分子首先以垂直于接触轴的构型渗透到结中。这种分子结足够强,可以拉动带有分子的单原子铂链,分子被包含在链中。随着链的形成,分子可以保持在垂直构型,也可以旋转到平行构型。沿着结的位移,单分子构型的演化与理论预测定量一致,这证明了分子的垂直和平行排列的解释是合理的。我们的分析表明,二维电导-位移直方图与条件相关分析的结合是分析单分子断接实验中基本不同类型结轨迹的有用工具。