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首页> 外文期刊>ACS nano >A tripodal molecule on a gold surface: Orientation-dependent coupling and electronic properties of the molecular legs
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A tripodal molecule on a gold surface: Orientation-dependent coupling and electronic properties of the molecular legs

机译:金表面上的三脚架分子:分子腿的取向依赖性偶联和电子性质

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摘要

The realization of molecular electronics demands a detailed knowledge of the correlation between chemical groups and electronic function. It has become obvious during the last years that the conformation of a molecule and its coupling to the connecting electrodes plays a crucial role in its conductance behavior and its electronic function, e.g., as a switch. Knowledge about these relationships is therefore essential for future design of molecular electronic building blocks. We present a new three-dimensional molecule, consisting of three identical molecular wires connected to a headgroup. Due to the well-defined spatial arrangement of the molecule in a nonplanar geometry, it is possible to investigate the conductance behavior of these wires with respect to their position and coupling to the surface electrode with the submolecular resolution of a scanning tunneling microscope. The experimental findings are supported by calculations of the electronic structure and conformation of the molecule on the surface by density functional theory with dispersion corrections.
机译:分子电子学的实现要求对化学基团与电子功能之间的相关性有详细的了解。在最近几年中,很明显的是,分子的构象及其与连接电极的偶联在其电导行为和其电子功能(例如作为开关)中起着至关重要的作用。因此,有关这些关系的知识对于分子电子构件的未来设计至关重要。我们提出了一个新的三维分子,由连接到头基的三个相同的分子线组成。由于分子在非平面几何形状中的明确定义的空间排列,因此可以用扫描隧道显微镜的亚分子分辨率研究这些导线相对于其位置以及与表面电极耦合的电导行为。实验结果得到密度分布理论和色散校正的电子结构计算和表面分子构象的支持。

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