化学
电导
离子键合
化学物理
分子
断开连接
电化学
接触电阻
电极
分子电子学
分子线
纳米技术
密度泛函理论
联轴节(管道)
结晶学
计算化学
离子
凝聚态物理
物理化学
有机化学
工程类
物理
机械工程
材料科学
作者
Yaping Zang,Andrew Pinkard,Zhen–Fei Liu,Jeffrey B. Neaton,Michael L. Steigerwald,Xavier Roy,Latha Venkataraman
摘要
We report a series of single-molecule transport measurements carried out in an ionic environment with oligophenylenediamine wires. These molecules exhibit three discrete conducting states accessed by electrochemically modifying the contacts. Transport in these junctions is defined by the oligophenylene backbone, but the conductance is increased by factors of ∼20 and ∼400 when compared to traditional dative junctions. We propose that the higher-conducting states arise from in situ electrochemical conversion of the dative Au←N bond into a new type of Au–N contact. Density functional theory-based transport calculations establish that the new contacts dramatically increase the electronic coupling of the oligophenylene backbone to the Au electrodes, consistent with experimental transport data. The resulting contact resistance is the lowest reported to date; more generally, our work demonstrates a facile method for creating electronically transparent metal–organic interfaces.
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