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溶剂和对映体纯度对不同超分子聚合物之间转变的影响。

Influence of the solvent and the enantiomeric purity on the transition between different supramolecular polymers.

机构信息

Institute for Complex Molecular Systems and the Laboratory of Macromolecular and Organic Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Chemistry. 2012 Nov 19;18(47):15057-64. doi: 10.1002/chem.201200984. Epub 2012 Oct 2.

Abstract

The self-assembly of two enantiomerically pure hexa(oligo(p-phenylene vinylene))-substituted benzenes having 24 stereocenters was studied in pure methylcyclohexane (MCH) and in a mixture of MCH/toluene (4:1). Irrespective of the solvent a cooperative supramolecular polymerization mechanism was determined for these star-shaped molecules by using temperature-dependent CD and UV/Vis spectroscopy. Quite remarkably, a transition from one helical supramolecular state (A) to a second more thermodynamically stable supramolecular helical assembly (B) was observed. The rate of the A→B transition was strongly dependent on the nature of the solvent; being faster in the solvent mixture than in pure MCH. By using size exclusion chromatography we could relate the increased rate to a decreased stability of the supramolecular A state in the solvent mixture. Next, we mixed the two enantiomerically pure hexa-substituted benzene derivatives in a so-called majority-rules experiment, which lead to the anitcipated chiral amplification in the A state. More importantly it appeared that the A→B transition was significantly hampered in these mixed systems. Furthermore, the absence of chiral amplification in the B state revealed the formation of separated enantiomerically pure assemblies. Therefore, by using a wide variety of spectroscopic and chromatographic techniques we determined the influence of solvent and enantiomeric purity on the transition between different supramolecular states.

摘要

两种对映体纯的六聚(寡聚(对亚苯基乙炔))取代苯的自组装,每个分子具有 24 个手性中心,在纯甲基环己烷(MCH)和 MCH/甲苯(4:1)混合物中进行了研究。通过使用温度依赖的 CD 和 UV/Vis 光谱法,确定了这些星形分子的协同超分子聚合机制,无论溶剂如何。值得注意的是,观察到从一种螺旋超分子状态(A)到第二种热力学上更稳定的超分子螺旋组装(B)的转变。A→B 转变的速率强烈依赖于溶剂的性质;在溶剂混合物中比在纯 MCH 中更快。通过使用尺寸排阻色谱法,我们可以将增加的速率与溶剂混合物中超分子 A 状态的稳定性降低相关联。接下来,我们在所谓的多数规则实验中混合了两种对映体纯的六取代苯衍生物,这导致了 A 状态下预期的手性放大。更重要的是,似乎在这些混合体系中,A→B 的转变受到了很大的阻碍。此外,B 状态下没有手性放大表明形成了分离的对映体纯组装体。因此,通过使用各种光谱和色谱技术,我们确定了溶剂和对映体纯度对不同超分子状态之间转变的影响。

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