Hartmann-Hahn polarization transfer in liquids: An ideal tool for selective experiments

P. Pelupessy, E. Chiarparin
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引用次数: 56

Abstract

Cross-polarization using continuous-wave spin-locking fields has never become routine in liquid-state nuclear magnetic resonance. Efficiency of cross-polarization tends to be strongly attenuated if radio-frequency (RF) fields are not perfectly homogeneous. It has recently been demonstrated that imperfections in RF-fields have little effect on efficiency of polarization transfer, provided that RF-amplitudes are comparable to magnitudes of heteronuclear scalar coupling constants, rendering this method ideal for selective experiments. The technique can be exploited for the excitation of nuclei with a low gyromagnetic factor like 13C and 15N, as well as of nuclei with a high gyromagnetic factor like 1H. Several useful applications are discussed. © 2000 John Wiley & Sons, Inc. Concepts Magn Reson 12: 103–124, 2000
液体中的哈特曼-哈恩极化传递:一种理想的选择性实验工具
使用连续波自旋锁定场的交叉极化在液态核磁共振中从未成为常规。如果射频场不是完全均匀的,交叉极化的效率往往会严重衰减。最近的研究表明,如果rf振幅与异核标量耦合常数的大小相当,则rf场的缺陷对极化传递效率的影响很小,这使得该方法非常适合于选择性实验。该技术可用于13C和15N等低回旋磁因子原子核的激发,以及1H等高回旋磁因子原子核的激发。讨论了几个有用的应用。©2000 John Wiley & Sons, Inc物理学报,12 (3):393 - 394,2000
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