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Merging Constitutional and Motional Covalent Dynamics in Reversible Imine Formation and Exchange Processes

机译:在可逆的亚胺形成和交换过程中合并体态和运动共价动力学

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摘要

The formation and exchange processes of imines of salicylaldehyde, pyridine-2-carboxaldehyde, and benzaldehyde have been studied, showing that the former has features of particular interest for dynamic covalent chemistry, displaying high efficiency and fast rates. The monoimines formed with aliphatic a,ω-diamines display an internal exchange process of self-transimination type, inducing a local motion of either "stepping-in-place" or "single-step" type by bond interchange, whose rate decreases rapidly with the distance of the terminal amino groups. Control of the speed of the process over a wide range may be achieved by substituents, solvent composition, and temperature. These monoimines also undergo intermolecular exchange, thus merging motional and constitutional covalent behavior within the same molecule. With polyamines, the monoimines formed execute internal motions that have been characterized by extensive one-dimensional, two-dimensional, and EXSY proton NMR studies. In particular, with linear polyamines, nondirectional displacement occurs by shifting of the aldehyde residue along the polyamine chain serving as molecular track Imines thus behave as simple prototypes of systems displaying relative motions of molecular moieties, a subject of high current interest in the investigation of synthetic and biological molecular motors. The motional processes described are of dynamic covalent nature and take place without change in molecular constitution. They thus represent a category of dynamic covalent motions, resulting from reversible covalent bond formation and dissociation. They extend dynamic covalent chemistry into the area of molecular motions. A major further step will be to achieve control of directionality. The results reported here for imines open wide perspectives, together with other chemical groups, for the implementation of such features in multifunctional molecules toward the design of molecular devices presenting a complex combination of motional and constitutional dynamic behaviors.
机译:研究了水杨醛,吡啶-2-羧醛和苯甲醛的亚胺的形成和交换过程,表明前者具有动态共价化学特别令人关注的特征,显示出高效率和快速速率。由脂肪族α,ω-二胺形成的单亚胺具有自转移型的内部交换过程,通过键交换引起“就位”或“单步”型的局部运动,其速率随末端氨基的距离。可以通过取代基,溶剂组成和温度来实现在宽范围内控制处理速度。这些单亚胺也经历分子间交换,因此将运动和结构共价行为合并在同一分子内。与多胺一起,形成的单亚胺执行内部运动,该运动以广泛的一维,二维和EXSY质子NMR研究为特征。尤其是,对于线性多胺,醛残基沿着用作分子轨道的多胺链移动会发生无方向位移。亚胺因此表现为显示分子部分相对运动的系统的简单原型,这在合成化学研究中引起了广泛关注和生物分子马达。所描述的运动过程具有动态共价性质,并且发生时分子组成没有变化。因此,它们代表了一类动态的共价运动,它是由可逆的共价键形成和解离产生的。它们将动态共价化学扩展到分子运动领域。进一步的主要步骤将是控制方向性。此处报道的亚胺的结果与其他化学基团一起,为在多功能分子中实现此类功能提供了广阔的视野,从而实现了将运动和构造动力学行为复杂结合的分子装置设计。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第22期|p.9446-9455|共10页
  • 作者单位

    Laboratoire de Chimie Supramoleculaire, Institut de Science et d'ingenierie Supramoleculaires (ISIS), Universite de Strasbourg, 8allee Gaspard Monge, Strasbourg 67000, France;

    Laboratoire de Chimie Supramoleculaire, Institut de Science et d'ingenierie Supramoleculaires (ISIS), Universite de Strasbourg, 8allee Gaspard Monge, Strasbourg 67000, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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