首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effect of Tunneling Electron Injection on the Dynamic Motion of Confined Molecules in Self-Assembled Molecular Corrals
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Effect of Tunneling Electron Injection on the Dynamic Motion of Confined Molecules in Self-Assembled Molecular Corrals

机译:隧道电子注射对自组装分子腐蚀局限性分子动态运动的影响

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摘要

The dynamic motion of trimethylphosphine (TMP) adsorbates enclosed in self-assembled pyrrole molecular corral structures was observed using scanning tunneling microscopy (STM) techniques. Sequential STM images were obtained under various sample bias and tunneling current conditions to investigate the influence of tunneling conditions on the TMP dynamic motion. It was observed that the TMP adsorbates attempt to move more frequently at lower sample bias conditions, and the TMP movement holds a linear-like relationship with the sample bias. The Si P antibonding orbitals get stimulated at lower sample bias conditions, which in turn weaken the Si P bond and force the TMP adsorbates to move. A process can be developed using this attribute to control the dynamic TMP motion such that this molecular system can be utilized as a molecular electronic device.
机译:使用扫描隧道显微镜(STM)技术观察三甲基膦(TMP)吸附物的三甲基膦(TMP)吸附物的动态运动。 在各种样本偏置和隧道电流条件下获得顺序STM图像,以研究隧道条件对TMP动态运动的影响。 观察到TMP吸附在较低的样品偏置条件下尝试更频繁地移动,并且TMP运动保持与样本偏压的线性关系。 Si P抗抗胰岛滴度在较低的样品偏置条件下刺激,反过来削弱Si P键并力强制TMP吸附物。 可以使用该属性开发一个过程以控制动态TMP运动,使得该分子系统可以用作分子电子器件。

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