论文标题
通过表面合成锚定分子转子
Anchoring molecular rotors by on-surface synthesis
论文作者
论文摘要
单分子转子是构建机器人 - 触发分子机械机器的重要组成部分,也是一个窗口,以使有关有机分子在表面上的有机分子运动的复杂物理和化学问题散发出窗口。在这种分子建筑位点,每个组件的稳定性是至关重要的先决条件。为了通过低温扫描隧道显微镜(LT-STM)实现分子稳定的逐步旋转,原子尺度轴尤其重要。预计理想的原子尺度轴将在外部激发下在金属表面上旋转单个分子的锚定和迁移率之间进行平衡。在本章中,测试和讨论了有关如何固定分子转子的几种化学锚定策略。提示引起的操纵和运动分析用作研究所提出策略的特性和功能的工具。
Single molecular rotor is an important component for constructing bot-tom-up molecular mechanical machines and a window for shedding light on complex physical and chemical questions about motions of organic molecules on surfaces. Stability of each component in such a molecular construction site is a crucial prerequisite. To realize a stable stepwise rotation of a molecule by a low temperature scanning tunneling microscope (LT-STM), atomic scale axles is particularly important. An ideal atomic scale axle is expected to balance between anchoring and mobility of rotating a single molecule on a metal surface under external excitations. In this Chapter, several chemical anchoring strategies on how to pin a molecular rotor are tested and discussed. Tip-induced manipulation and motion analysis are used as tools to investigate the properties and functionality of the proposed strategies.