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液晶的二维动态取向 director (13)C 核磁共振

Two-dimensional dynamic-director (13)C NMR of liquid crystals.

作者信息

McElheny D, Zhou M, Frydman L

机构信息

Department of Chemistry (M/C 111), University of Illinois at Chicago, 845 W. Taylor Street, Chicago, Illinois 60607-7061, USA.

出版信息

J Magn Reson. 2001 Feb;148(2):436-41. doi: 10.1006/jmre.2000.2254.

Abstract

A novel nuclear magnetic resonance (NMR) experiment for facilitating the resolution and assignment of liquid crystalline (13)C NMR spectra is described. The method involves the motor-driven reorientation of the liquid crystalline director, in synchrony with the acquisition of a 2D chemical shift correlation spectrum. By monitoring in this fashion the (13)C NMR evolution of spins in the liquid crystal at two different director orientations with respect to the magnetic field, the method distinguishes anisotropic from isotropic displacements and can be utilized for assigning the resonances and estimating local degrees of order. Of various potential pairs of angles suitable for such a correlation, the (0 degrees, 90 degrees ) choice was found to be most convenient, as it avoids line broadening complications that may otherwise originate from heterogeneities of the oriented phase. The technique thus derived was employed in the analysis of a series of monomeric and polymeric liquid crystal systems.

摘要

描述了一种用于促进液晶(13)C NMR谱的分辨率和归属的新型核磁共振(NMR)实验。该方法涉及液晶指向矢的电机驱动重定向,与二维化学位移相关谱的采集同步。通过以这种方式监测液晶中自旋在相对于磁场的两个不同指向矢方向上的(13)C NMR演化,该方法区分各向异性位移和各向同性位移,并可用于归属共振和估计局部有序度。在适用于这种相关性的各种潜在角度对中,发现(0度,90度)的选择最为方便,因为它避免了否则可能源于取向相不均匀性的线宽展宽复杂性。由此得到的技术被用于一系列单体和聚合物液晶体系的分析。

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