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Increased Speed of Rotation for the Smallest Light-Driven Molecular Motor

机译:最小的光驱动分子电动机提高了旋转速度

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摘要

In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 carbon and 24 hydrogen atoms. The concept of controlling directionality of rotary movement at the molecular level by introduction of a stereogenic center next to the central olefinic bond of a sterically overcrowded alkene does not only hold for molecular motors with six-membered rings, but is also applicable to achieve the unidirectional movement for molecular motors having five-membered rings. Although X-ray analyses show that the five-membered rings in the cis-and trans-isomer of the new molecular motor are nearly flat, the energy differences between the (pseudo-)diaxial and (pseudo-)diequatorial conformations of the methyl substituents in both isomers are still large enough to direct the rotation of one-half of the molecule with respect to the other half in a clockwise fashion. The full rotary cycle comprises four consecutive steps: two photochemical isomerizations each followed by a thermal helix inversion. Both photochemical cis-trans isomerizations proceed with a preference for the unstable diequatorial isomers over the stable diaxial isomers. The thermal barriers for helix inversion of this motor molecule have decreased dramatically compared to its six-membered ring analogue, the half-life of the fastest step being only 18 s at room temperature.
机译:在本文中,我们介绍了由28个碳原子和24个氢原子组成的最小的人造光驱动分子电动机。通过在立体拥挤的烯烃的中心烯键附近引入立体中心来控制分子水平上旋转运动的方向性的概念不仅适用于具有六元环的分子马达,而且还可用于实现单向具有五元环的分子电动机的运动。尽管X射线分析表明,新分子马达的顺式和反式异构体中的五元环几乎是平坦的,但甲基取代基的(伪)双轴构象和(伪)双季构象之间的能量差这两种异构体中的两个都仍然足够大,可以以顺时针方式引导分子的一半相对于另一半旋转。完整的旋转循环包括四个连续的步骤:两次光化学异构化,然后进行热螺旋转化。相对于稳定的双轴异构体,两种光化学的顺-反异构化都优先选择不稳定的二季铵异构体。与它的六元环类似物相比,该马达分子的螺旋反转的热障已大大降低,最快步骤的半衰期在室温下仅为18 s。

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