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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Polymorphism, Structure, Guest Conformation, and Dynamics in the Inclusion Compound of 1,2-Dichloroethane with Tris(5-acetyl-3-thienyl) Methane: a Combined Single Crystal and Powder X-ray Diffraction, ~(13)C CP/MAS, and ~2H NMR Study
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Polymorphism, Structure, Guest Conformation, and Dynamics in the Inclusion Compound of 1,2-Dichloroethane with Tris(5-acetyl-3-thienyl) Methane: a Combined Single Crystal and Powder X-ray Diffraction, ~(13)C CP/MAS, and ~2H NMR Study

机译:1,2-二氯乙烷与三(5-乙酰基-3-噻吩基)甲烷的包合物的多态性,结构,客体构象和动力学:单晶和粉末X射线衍射,〜(13)C CP / MAS和〜2H NMR研究

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摘要

Various physicochemical characterization techniques were used to study the structure and guest dynamics of the 1,2-dichloroethane/tris (5-acetyl-3-thienyl) methane (TATM) inclusion compound. This complex was observed to crystallize in two forms, a triclinic P-1 structure and a less usual monoclinic P2_1/c form. The X-ray structures indicate that the TATM molecules form "bottleneck" channels parallel to the crystallographic c axis in both forms and that the guests exist exclusively in the trans form. Solid-state deuterium NMR spectroscopy was used to study the dynamics of the 1,2-dichloroethane-d_4 guest in the triclinic form. The simplest model consistent with the experimental NMR spectra was based on internal rotation about the C-C bond (a trans/gauche conformational equilibrium). As this was not consistent with the X-ray structure, another model was developed where the trans conformer performs 180° flips about an axis through the center of symmetry of the guest and perpendicular to the Cl-C-C-C-Cl plane. The important point to be taken from this work is that complementary methods are often necessary to discriminate between motional models based on a single technique, and that the simplest model is not necessarily correct.
机译:各种物理化学表征技术用于研究1,2-二氯乙烷/三(5-乙酰基-3-噻吩基)甲烷(TATM)包合物的结构和客体动力学。观察到该络合物以两种形式结晶,三斜P-1结构和较不常见的单斜晶P2_1 / c形式。 X射线结构表明TATM分子以两种形式形成平行于晶体学c轴的“瓶颈”通道,并且客体仅以反式形式存在。固态氘核磁共振波谱用于研究三斜晶形式的1,2-二氯乙烷-d_4客体的动力学。与实验NMR光谱一致的最简单模型是基于绕C-C键的内部旋转(反式/胶构构象平衡)。由于这与X射线结构不一致,因此开发了另一种模型,其中反式构象异构体绕通过客体对称中心并垂直于Cl-C-C-C-Cl平面的轴进行180°翻转。从这项工作中得出的重要一点是,通常需要使用互补方法来区分基于单一技术的运动模型,并且最简单的模型不一定正确。

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