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通过单晶X射线衍射和2H核磁共振光谱研究结构I型醚笼形水合物中的结构、动力学和有序性。

Structure, dynamics and ordering in structure i ether clathrate hydrates from single-crystal X-ray diffraction and 2H NMR spectroscopy.

作者信息

Udachin Konstantin A, Ratcliffe Christopher I, Ripmeester John A

机构信息

Steacie Institute for Molecular Sciences, National Research Council Canada, Ottawa, ON. K1A 0R6, Canada.

出版信息

J Phys Chem B. 2007 Oct 4;111(39):11366-72. doi: 10.1021/jp071342v. Epub 2007 Sep 12.

Abstract

The structure and dynamics of trimethylene oxide (TMO) and ethylene oxide (EO) structure I (sI) hydrates are reported from single-crystal X-ray diffraction and 2H NMR spectroscopic measurements. The guest molecule positions in the large cage were determined with considerable improvement over previous diffraction work so that a dynamic model that was consistent with these orientations could be developed to explain the 2H NMR data. Reorientations are shown to take place among both symmetry-related and symmetry-independent sites, 16 positions in all. Because of the prochiral nature of the molecules, both guests show 2H NMR line shapes with large asymmetry parameters, rather unusual for guest molecules in the sI hydrate large cage. The results also show that the dipolar axis of the TMO molecule lies close to the 4 bar axis of the cage on average, whereas for EO, this is not the case. For TMO, progressive alignment of the polar axis with decrease of temperature then allows the dipoles to interact more strongly until dipole reversal is quenched at the ordering transition. The lack of ordering of EO is consistent with the much weaker alignment of the molecular dipoles along the 4 bar axis. With the new complementary information on the structure and dynamics from crystallography and NMR, it is possible to understand why the large cage guests order in the large cage of sI hydrate for TMO hydrate but not for EO hydrate.

摘要

通过单晶X射线衍射和2H NMR光谱测量,报道了环氧丙烷(TMO)和环氧乙烷(EO)结构I(sI)水合物的结构与动力学。与之前的衍射工作相比,大笼中客体分子的位置测定有了显著改进,从而可以建立一个与这些取向一致的动力学模型来解释2H NMR数据。结果表明,重取向发生在对称相关和对称无关的位点之间,总共16个位置。由于分子的前手性性质,两种客体的2H NMR线形都具有很大的不对称参数,这对于sI水合物大笼中的客体分子来说是相当不寻常的。结果还表明,TMO分子的偶极轴平均靠近笼的4次轴,而EO则不然。对于TMO,随着温度降低,极轴逐渐排列,使得偶极子之间的相互作用更强,直到在有序转变时偶极反转被淬灭。EO缺乏有序性与分子偶极沿4次轴的排列弱得多是一致的。有了来自晶体学和NMR的关于结构和动力学的新的补充信息,就有可能理解为什么在sI水合物的大笼中,TMO水合物的大笼客体会有序排列,而EO水合物则不会。

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