Centre for Systems Chemistry, Stratingh Institute for Chemistry and Zernike Institute for Advanced Materials, Faculty of Mathematics and Natural Sciences, University of Groningen , Nijenborgh 4, 9747 AG Groningen, The Netherlands.
J Am Chem Soc. 2017 Jul 19;139(28):9650-9661. doi: 10.1021/jacs.7b04412. Epub 2017 Jul 5.
Symmetric molecular motors based on two overcrowded alkenes with a notable absence of a stereogenic center show potential to function as novel mechanical systems in the development of more advanced nanomachines offering controlled motion over surfaces. Elucidation of the key parameters and limitations of these third-generation motors is essential for the design of optimized molecular machines based on light-driven rotary motion. Herein we demonstrate the thermal and photochemical rotational behavior of a series of third-generation light-driven molecular motors. The steric hindrance of the core unit exerted upon the rotors proved pivotal in controlling the speed of rotation, where a smaller size results in lower barriers. The presence of a pseudo-asymmetric carbon center provides the motor with unidirectionality. Tuning of the steric effects of the substituents at the bridgehead allows for the precise control of the direction of disrotary motion, illustrated by the design of two motors which show opposite rotation with respect to a methyl substituent. A third-generation molecular motor with the potential to be the fastest based on overcrowded alkenes to date was used to visualize the equal rate of rotation of both its rotor units. The autonomous rotational behavior perfectly followed the predicted model, setting the stage for more advanced motors for functional dynamic systems.
基于两个过度拥挤的烯烃且不存在手性中心的对称分子马达有望成为新型机械系统,为在表面上实现更先进的纳米机器提供受控运动。阐明这些第三代马达的关键参数和限制对于基于光驱动旋转运动的优化分子机器的设计至关重要。本文我们展示了一系列第三代光驱动分子马达的热和光化学旋转行为。核心单元对转子施加的空间位阻在控制旋转速度方面起着关键作用,其中较小的尺寸导致较低的势垒。伪不对称碳中心的存在为马达提供了单向性。桥头取代基的空间效应的调节允许精确控制反式旋转运动的方向,通过设计两个相对于甲基取代基显示相反旋转的马达来说明。第三代分子马达具有成为迄今为止基于过度拥挤烯烃的最快马达的潜力,用于可视化其两个转子单元的等速旋转。自主旋转行为完美遵循预测模型,为功能动态系统的更先进的马达奠定了基础。