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首页> 外文期刊>The Journal of Chemical Physics >Orientation-specific switching of inelastic electron tunneling in an oxygen-pyridine complex adsorbed onto an Ag(110) surface
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Orientation-specific switching of inelastic electron tunneling in an oxygen-pyridine complex adsorbed onto an Ag(110) surface

机译:在吸附在Ag(110)表面上的氧 - 吡啶配合物中无弹性电子隧穿的定向特异性切换

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摘要

Here, we report the development of a molecular rotary switch (a "stator-rotor" consisting of a single oxygen molecule as a stator and a single pyridine molecule as a rotor) on a silver surface. The pyridine molecule was bonded to the oxygen molecule and was found to rotate to enable "ON" or "OFF" vibrational conductance through the oxygen molecule. Four stable sites around the oxygen molecule were observed, and vibration conductance turned on and off depending on the site at which the pyridine molecule bonded. The spatially resolved mapping of the vibrational change revealed two locations of maximal vibration intensity, separated by similar to 3 angstrom. These positions acted as two conducting channels. The two distinct vibrational energy levels were associated with the switching process. Adsorption-induced electron transfer between the silver layers and the molecules enhanced the local interactions between the molecules. The two vibration modes were excited by resonant tunneling despite substantial interactions between the molecules, which resulted in a decrease in tunneling conductance. An independent pathway exists for the vibrational excitation process by tunneling electrons and intermolecular interactions.
机译:在这里,我们报道了在银表面上由单个氧分子和作为转子的单个氧分子和单个吡啶分子组成的分子旋转开关(“定子转子”。将吡啶分子键合在氧分子上,发现旋转以使通过氧分子能够“开启”或“OFF”振动传导。观察到氧分子周围的四个稳定部位,并且振动传导根据吡啶分子键合的位点打开和关闭。振动变化的空间分辨地图绘制了两个最大振动强度的位置,相似于3埃。这些位置充当了两个导线。两个不同的振动能级与切换过程相关。银层和分子之间的吸附诱导的电子传递增强了分子之间的局部相互作用。尽管分子之间存在显着相互作用,因此通过谐振隧道激发两个振动模式,这导致隧道电导下降。通过隧穿电子和分子间相互作用存在振动激发过程的独立途径。

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