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用核磁共振多梯度自旋回波(MGSE)方法研究多孔介质内部磁场中的分子自扩散。

Molecular self-diffusion in internal magnetic fields of porous medium investigated by NMR MGSE method.

作者信息

Stepišnik Janez, Ardelean Ioan, Mohorič Aleš

机构信息

University of Ljubljana, Faculty of Mathematics and Physics, Physics Department, Jadranska 19, 1000 Ljubljana, Slovenia.

Physics Department, Faculty of Materials Science and Engineering, Technical University of Cluj-Napoca, Romania.

出版信息

J Magn Reson. 2021 Jul;328:106981. doi: 10.1016/j.jmr.2021.106981. Epub 2021 Apr 20.

Abstract

Inhomogeneous magnetic fields generated in porous media due to differences in magnetic susceptibility at solid/liquid interfaces and due to intrinsic or artificially doped magnetic impurities can be used to gain insight into the molecular dynamics of fluid in the structure of a porous medium using the concept of NMR modulated gradient spin echo method. We extended the theory of this method to the case of an inhomogeneous magnetic field that cannot be approximated by an uniform gradient, in order to explain the CPMG measurements of self-diffusion in water soaked ceramics, which are doped with magnetic impurities of different contents. The new interpretation provides the spin relaxation times, the average pore size and their distribution, as well as the strength of the internal magnetic gradient fields in the doped ceramics.

摘要

由于固/液界面处磁化率的差异以及由于固有或人工掺杂的磁性杂质,在多孔介质中产生的非均匀磁场可用于利用核磁共振调制梯度自旋回波方法的概念深入了解多孔介质结构中流体的分子动力学。我们将该方法的理论扩展到不能用均匀梯度近似的非均匀磁场情况,以解释在掺杂不同含量磁性杂质的水浸陶瓷中自扩散的CPMG测量结果。新的解释提供了自旋弛豫时间、平均孔径及其分布,以及掺杂陶瓷中内部磁梯度场的强度。

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