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Unidirectional rotary motion in achiral molecular motors

机译:非手性分子电动机中的单向旋转运动

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Control of the direction of motion is an essential feature of biological rotary motors and results from the intrinsic chirality of the amino acids from which the motors are made. In synthetic autonomous light-driven rotary motors, point chirality is transferred to helical chirality, and this governs their unidirectional rotation. However, achieving directional rotary motion in an achiral molecular system in an autonomous fashion remains a fundamental challenge. Here, we report an achiral molecular motor in which the presence of a pseudo-asymmetric carbon atom proved to be sufficient for exclusive autonomous disrotary motion of two appended rotor moieties. Isomerization around the two double bonds enables both rotors to move in the same direction with respect to their surroundings-like wheels on an axle-demonstrating that autonomous unidirectional rotary motion can be achieved in a symmetric system.
机译:运动方向的控制是生物旋转马达的基本特征,并且是由制造马达的氨基酸的固有手性引起的。在合成的自主式光驱动旋转电动机中,点手性被转换为螺旋手性,这决定了它们的单向旋转。然而,以自主方式在非手性分子系统中实现定向旋转运动仍然是一项基本挑战。在这里,我们报告了一种非手性分子马达,其中存在一个伪不对称碳原子,足以证明两个附加转子部分的排他自主旋转运动是足够的。围绕两个双键的异构化使两个转子都可以相对于其在轴上的周围环境的轮沿相同方向移动,这表明可以在对称系统中实现自主的单向旋转运动。

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