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首页> 外文期刊>Angewandte Chemie >Assembly, Thermodynamics, and Structure of a Two-Wheeled Composite of a Dumbbell-Shaped Molecule and Cylindrical Molecules with Different Edges
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Assembly, Thermodynamics, and Structure of a Two-Wheeled Composite of a Dumbbell-Shaped Molecule and Cylindrical Molecules with Different Edges

机译:哑铃形分子和圆柱形分子的组装,热力学和结构与不同边缘的圆柱形分子

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摘要

A carbonaceous dumbbell was able to spontaneously glue two tubular receptors to form a unique two-wheeled composite through van der Waals interactions, thus forcing the wheel components into contact with each other at the edges. In the present study, two tubular receptors with enantiomeric carbon networks were assembled on the dumbbell joint, and the handedness of the receptors was discriminated, thus leading to the self-sorting of homomeric receptors from a mixture of enantiomeric tubes. The crystal structures of the composites revealed the structural origins of the molecular recognition driven by van der Waals forces as well as the presence of a columnar array of C-120 molecules in a 1:1 composite.
机译:碳质哑铃能够通过范德华相互作用自发地胶合两个管状受体以形成独特的两轮复合材料,从而强迫车轮部件在边缘处彼此接触。 在本研究中,在哑铃关节上组装了具有对映体碳网络的两个管状受体,并识别受体的手性,从而导致来自对映体管的混合物的均匀受体的自分选。 复合材料的晶体结构揭示了Van der WaaS力驱动的分子识别的结构起源以及1:1复合材料中的C-120分子的柱状阵列的存在。

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