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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Controlled Directional Motions of Molecular Vehicles, Rotors, and Motors: From Metallic to Silicon Surfaces, a Strategy to Operate at Higher Temperatures
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Controlled Directional Motions of Molecular Vehicles, Rotors, and Motors: From Metallic to Silicon Surfaces, a Strategy to Operate at Higher Temperatures

机译:分子车辆,转子和电动机的受控方向运动:从金属表面到硅表面,是在较高温度下运行的策略

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摘要

In the last decade, many nanomachines with controlled molecular motions have been studied, mainly on metallic surfaces, which are easy to obtain very clean, and are stable over months. However, the studies of mechanical properties of nanomachines are mainly performed at very low temperatures, usually between 5 and 80 K, which prevents any kind of applications. In this Minireview, we will present our strategy to operate at higher temperatures, in particular through the use of semiconducting silicon surfaces. We also review our best achievements in the field through some examples of rotating molecular machines that have been designed, synthesized, and studied in our groups. On metallic surfaces, the nanovehicles are molecules with two or four triptycenes as wheels and the molecular motor is built around a ruthenium organometallic center with a piano-stool geometry and peripheric ferrocenyl groups. On semiconducting silicon surfaces, vehicles are also made from triptycene fragments and the rotor is a pentaphenylbenzene molecule.
机译:在过去的十年中,已经研究了许多具有受控分子运动的纳米机械,主要是在金属表面上,这些金属易于获得非常干净的材料,并且在数月内稳定。但是,对纳米机械的机械性能的研究主要是在非常低的温度下进行的,通常在5至80 K之间,这阻碍了任何类型的应用。在此Minireview中,我们将介绍在高温下操作的策略,尤其是通过使用半导体硅表面。我们还将通过一些在我们小组中设计,合成和研究过的旋转分子机器的例子,回顾该领域的最佳成就。在金属表面上,纳米汽车是具有两个或四个三联体作为轮子的分子,并且分子电动机围绕具有钢琴凳几何形状和外围二茂铁基团的钌有机金属中心构建。在半导体硅表面上,载具也由三茂铁碎片制成,转子是五苯基苯分子。

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