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由共官能化探针弯曲引起的原子力极值

Atomic Force Extrema Induced by the Bending of a CO-Functionalized Probe.

作者信息

Néel Nicolas, Kröger Jörg

机构信息

Institut für Physik, Technische Universität Ilmenau, D-98693 Ilmenau, Germany.

出版信息

Nano Lett. 2021 Mar 10;21(5):2318-2323. doi: 10.1021/acs.nanolett.1c00268. Epub 2021 Feb 23.

Abstract

The control and observation of reactants forming a chemical bond at the single-molecule level is a long-standing challenge in quantum physics and chemistry. Using a single CO molecule adsorbed at the apex of an atomic force microscope tip together with a Cu(111) surface, bending of the molecular probe is induced by torques due to van der Waals attraction and Pauli repulsion. As a result, the vertical force between CO and Cu(111) exhibits a characteristic dip-hump evolution with the molecule-surface separation, which depends sensitively on the initial tilt angle the CO axis encloses with the surface normal. The experimental force data are reproduced by model calculations that consider the CO deflection in a harmonic potential and the molecular orientation in the Pauli repulsion term of the Lennard-Jones potential. The presented findings shed new light on vertical-force extrema that can occur in scanning probe experiments with functionalized tips.

摘要

在单分子水平上对形成化学键的反应物进行控制和观察,是量子物理和化学领域长期以来的一项挑战。利用吸附在原子力显微镜针尖顶端的单个一氧化碳(CO)分子与铜(Cu)(111)表面相结合,由于范德华引力和泡利排斥力产生的扭矩会引起分子探针的弯曲。结果,CO与Cu(111)之间的垂直力随着分子与表面间距呈现出特征性的峰谷变化,这对CO轴与表面法线所成的初始倾斜角非常敏感。通过模型计算再现了实验力数据,该模型计算考虑了在简谐势中的CO偏转以及在Lennard-Jones势的泡利排斥项中的分子取向。所呈现的研究结果为使用功能化针尖的扫描探针实验中可能出现的垂直力极值提供了新的见解。

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