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在一个受陀螺仪启发的三苄基胺半穴居分子中存在多个受阻旋转体。

Multiple hindered rotators in a gyroscope-inspired tribenzylamine hemicryptophane.

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Org Chem. 2011 Mar 4;76(5):1418-24. doi: 10.1021/jo102480s. Epub 2011 Jan 27.

Abstract

A gyroscope-inspired tribenzylamine hemicryptophane provides a vehicle for exploring the structure and properties of multiple p-phenylene rotators within one molecule. The hemicryptophane was synthesized in three steps in good overall yield using mild conditions. Three rotator-forming linkers were cyclized to form a rigid cyclotriveratrylene (CTV) stator framework, which was then closed with an amine. The gyroscope-like molecule was characterized by (1)H NMR and (13)C NMR spectroscopy, and the structure was solved by X-ray crystallography. The rigidity of the two-component CTV-trismethylamine stator was investigated by (1)H variable-temperature (VT) NMR experiments and molecular dynamics simulations. These techniques identified gyration of the three p-phenylene rotators on the millisecond time scale at -93 °C, with more dynamic but still hindered motion at room temperature (27 °C). The activation energy for the p-phenylene rotation was determined to be ~10 kcal mol(-1). Due to the propeller arrangement of the p-phenylenes, their rotation is hindered but not strongly correlated. The compact size, simple synthetic route, and molecular motions of this gyroscope-inspired tribenzylamine hemicryptophane make it an attractive starting point for controlling the direction and coupling of rotators within molecular systems.

摘要

一个灵感来源于陀螺仪的三苄基胺类半穴状化合物为探索一个分子内多个对苯撑型旋转体的结构和性质提供了一个载体。该半穴状化合物通过三步反应,在温和条件下以良好的总收率合成。三个旋转体形成的连接子环合形成刚性的环三亚甲基苯(CTV)定子骨架,然后用胺封闭。通过 1H NMR 和 13C NMR 光谱对类陀螺仪分子进行了表征,并通过 X 射线晶体学确定了其结构。通过 1H 变温(VT)NMR 实验和分子动力学模拟研究了双组分 CTV-三甲基胺定子的刚性。这些技术在-93°C 下确定了三个对苯撑型旋转体在毫秒时间尺度上的回旋运动,在室温(27°C)下运动更为动态但仍受到阻碍。对苯撑旋转的活化能被确定为约 10 kcal mol(-1)。由于苯环呈推进器排列,它们的旋转受到阻碍但没有强烈的相关性。这种灵感来源于陀螺仪的三苄基胺类半穴状化合物具有紧凑的尺寸、简单的合成路线和分子运动性,为控制分子系统内旋转体的方向和耦合提供了一个有吸引力的起点。

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