STM studies for surface-mounted molecular rotors: a mini review

Tianyi Yang, Ruiqin Zhang
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Abstract

A molecular rotor is a molecule/molecular system that performs rotary motions under an external stimulus. Molecular rotors are promising for applications in medicine, optical usage, information science, etc. A molecular rotor is also a crucial component in constructing more sophisticated functional molecular machines. Anchoring molecular rotors on surfaces is regarded as a feasible way of building functional molecular rotor systems. Scanning tunneling microscope (STM) is a powerful tool for studying surface dynamics in real space on atomic precision. It provides an ideal platform for both qualitatively and quantitively investigating single and self-assembled molecular rotors mounted on surfaces. Herein, we review a series of studies utilizing STM to unveil the methodologies that are increasingly used in the area of surface-mounted molecule rotors. A combined usage of these methodologies is more and more necessary for researchers to advance the molecular rotor study in future.

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表面安装分子转子的 STM 研究:小型综述
分子转子是一种在外部刺激下做旋转运动的分子/分子系统。分子转子在医学、光学应用、信息科学等领域的应用前景广阔。分子转子也是构建更复杂的功能分子机器的关键部件。将分子转子锚定在表面上被认为是构建功能性分子转子系统的一种可行方法。扫描隧道显微镜(STM)是以原子精度研究真实空间表面动力学的强大工具。它为定性和定量研究安装在表面上的单个和自组装分子转子提供了一个理想的平台。在此,我们回顾了一系列利用 STM 进行的研究,以揭示在表面安装分子转子领域中越来越多使用的方法。未来,研究人员越来越有必要综合利用这些方法来推进分子转子研究。
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