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Supramolecular Chirality of Hydrogen-Bonded Rosette Assemblies

机译:氢键玫瑰花结组件的超分子手性

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The control of chirality in synthetic self-assembled systems remains challenging because of their lower stability and their higher susceptibility to racemization when compared to covalent systems. In this review the supramolecular chirality of noncovalent hydrogen-bonded assemblies formed by multiple cooperative hydrogenbonds between calix[4]arene dimelamines and cyanurates or barbiturates derivatives (rosette assemblies) are described. It is shown that the amplification of chirality (a high enantiomeric or diastereomeric excess induced by a small initial amount of chiral bias) of double and tetrarosette assemblies is influenced by bulky substitution on their components and electronic properties of the substituents as well as their proximity to the rosette core. In the absence of chiral centers in their components, the assemblies form as a racemic mixture of both enantiomers (P and M). The synthesis of enantio-merically pure rosette assemblies is conducted via induction of chirality using chiral barbiturates, followed by substitution of the chiral components for achiral cyanurates ("chiral memory" concept). The addition of an external auxiliary to a racemic mixture of P and M assemblies leading to the formation of one of the two possible diastereomeric assemblies is also described. Moreover, chiral resolution of self-assembled nanostruc-tures on highly oriented pyrolytic graphite (HOPG) surfaces is also discussed
机译:合成自组装系统中手性的控制仍然具有挑战性,因为与共价系统相比,它们的稳定性较低,对外消旋的敏感性较高。在这篇综述中,描述了由杯[4]亚芳基二蜜胺和氰尿酸酯或巴比妥酸酯衍生物(玫瑰花酸酯组件)之间的多个协同氢键形成的非共价氢键组件的超分子手性。结果表明,双键和四键簇合物的手性放大(由少量初始手性偏斜引起的高对映异构体或非对映异构体过量)受其取代基的大体积取代和电子性质以及与取代基的接近程度的影响花环核心。在其组分中没有手性中心的情况下,组装体以两种对映异构体(P和M)的外消旋混合物形式形成。通过使用手性巴比妥酸酯诱导手性,然后用手性组分代替非手性氰脲酸酯来合成对映体纯的玫瑰花结组装体(“手性记忆”概念)。还描述了向P和M组件的外消旋混合物中添加外部助剂,导致形成两种可能的非对映体组件之一。此外,还讨论了高度取向的热解石墨(HOPG)表面上自组装纳米结构的手性拆分。

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