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通过旋转框架NQR技术绘制固体中的分子取向

Mapping molecular orientation in solids by rotating-frame NQR techniques.

作者信息

Casanova F, Robert H, Pusiol D

机构信息

Astronomia y Fisica, Universidad Nacional de Cordoba, Cordoba, 5000, Argentina.

出版信息

J Magn Reson. 1998 Jul;133(1):129-33. doi: 10.1006/jmre.1998.1448.

Abstract

A multi-dimensional NQR technique to image both the spatial distribution of quadrupolar nuclei and the local orientation of the electric field gradient tensor at the quadrupole sites in solids is reported. The encoding procedure is based on the irradiation of the sample by a pulse sequence composed of spatially homogeneous and inhomogeneous radiofrequency fields. A method that encodes the spatial and orientation information in the amplitudes of the free-induction decay signals and a proper three-dimensional reconstruction procedure that yields the space-orientation-dependent NQR spectra are described. A two-dimensional variant allows rapid measurement of the spatially dependent orientation distribution of molecules, disregarding the spectroscopic information. Copyright 1998 Academic Press.

摘要

报道了一种用于对固体中四极核的空间分布以及四极位置处电场梯度张量的局部取向进行成像的多维核磁共振技术。编码过程基于由空间均匀和非均匀射频场组成的脉冲序列对样品进行照射。描述了一种在自由感应衰减信号幅度中编码空间和取向信息的方法以及一种能产生与空间取向相关的核磁共振谱的适当三维重建程序。二维变体允许快速测量分子的空间相关取向分布,而无需考虑光谱信息。版权所有1998年学术出版社。

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