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Electric field effect on the vibration of single CO molecules in a scanning Tunneling microscope junction

机译:电场对扫描隧道显微镜结中单个CO分子振动的影响

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A low-temperature scanning tunneling microscope (STM) and ab initio calculations were used to study the electric field effect on the vibration of single CO. molecules in an STM junction at 13 K. The vibrational energy of CO molecules adsorbed on silver atoms, measured by STM-based inelastic electron tunneling spectroscopy, depends on the direction of the electric field applied between the STM tip and the silver species. This characteristic can be explained by the charge separation model. The electric field modifies the binding characteristics of CO on silver as a result of a change in the charged states of the species, which leads to an increase (or a decrease) of the energies of the hindered rotation and the CO stretch on silver.
机译:使用低温扫描隧道显微镜(STM)和从头算来研究电场对STM结在13 K处单个CO分子振动的影响。测量了吸附在银原子上的CO分子的振动能基于STM的非弹性电子隧穿光谱学,取决于STM尖端和银物质之间施加的电场方向。该特性可以通过电荷分离模型来解释。电场改变了物种的带电状态,从而改变了CO在银上的结合特性,这导致旋转受阻的能量增加(或减少),并且CO在银上拉伸。

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