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Conformational polymorphism in a heteromolecular single crystal leads to concerted movement akin to collective rack-and-pinion gears at the molecular level

机译:异分子单晶中的构象多态性导致在分子水平上类似于集体齿轮齿条齿轮的一致运动

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摘要

We describe a heteromolecular single crystal that exhibits three reversible and concerted reorganizations upon heating and cooling. The products of the reorganizations are conformational polymorphs. The reorganizations are postulated to proceed through three motions: (i) alkyl translations, (ii) olefin rotations, and (iii) rotational tilts. The motions are akin to rack-and-pinion gears at the molecular level. The rack-like movement is based on expansions and compressions of alkyl chains that are coupled with pinion-like 180° rotations of olefins. To accommodate the movements, phenol and thiophene components undergo rotational tilts about intermolecular hydrogen bonds. The movements are collective, being propagated in close-packed repeating units. This discovery marks a step to understanding how organic solids can support the development of crystalline molecular machines and devices through correlated and collective movements.
机译:我们描述了一种异分子单晶,在加热和冷却后会表现出三个可逆和协调的重组。重组的产物是构象多晶型物。假定重组将通过三个动作进行:(i)烷基翻译,(ii)烯烃旋转和(iii)旋转倾斜。在分子水平上,该运动类似于齿条齿轮。齿条状运动是基于烷基链的膨胀和压缩,而烷基链的膨胀和压缩与烯烃的小齿轮状180°旋转相关。为了适应运动,苯酚和噻吩组分经历了围绕分子间氢键的旋转倾斜。这些运动是集体的,以密密麻麻的重复单元传播。这一发现标志着了解有机固体如何通过相关的集体移动来支持结晶分子机器和设备发展的一步。

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