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首页> 外文期刊>The Journal of Chemical Physics >High resolution NMR study of T_1 magnetic relaxation dispersion. II. Influence of spin-spin couplings on the longitudinal spin relaxation dispersion in multispin systems
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High resolution NMR study of T_1 magnetic relaxation dispersion. II. Influence of spin-spin couplings on the longitudinal spin relaxation dispersion in multispin systems

机译:T_1磁弛豫分散体的高分辨率NMR研究。二。自旋-自旋耦合对多自旋系统中纵向自旋弛豫色散的影响

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摘要

Effects of scalar spin-spin interactions on the nuclear magnetic relaxation dispersion (NMRD) of coupled multispin systems were analyzed. Taking spin systems of increasing complexity we demonstrated pronounced influence of the intramolecular spin-spin couplings on the NMRD of protons. First, at low magnetic fields where there is strong coupling of spins the apparent relaxation times of the coupled spins become equal. Second, there are new features, which appear at the positions of the nuclear spin level anticrossings. Finally, in coupled spin systems there can be a coherent contribution to the relaxation kinetics present at low magnetic fields. All these peculiarities caused by spin-spin interactions are superimposed on the features in NMRD, which are conditioned by changes of the motional regime. Neglecting the effects of couplings may lead to misinterpretation of the NMRD curves and significant errors in determining the correlation times of molecular motion. Experimental results presented are in good agreement with theoretical calculations.
机译:分析了标量自旋-自旋相互作用对耦合多自旋系统的核磁弛豫色散(NMRD)的影响。以日益增加的复杂性的自旋系统,我们证明了分子内自旋-自旋偶联对质子NMRD的显着影响。首先,在自旋强耦合的低磁场下,自旋的表观弛豫时间变得相等。第二,有一些新特征出现在核自旋水平反交叉的位置。最后,在耦合自旋系统中,低磁场下存在的弛豫动力学可能具有连贯的作用。由自旋-自旋相互作用引起的所有这些特性都叠加在NMRD的特征上,这些特征取决于运动方式的变化。忽略偶合效应可能导致对NMRD曲线的误解,并在确定分子运动的相关时间时出现重大错误。实验结果与理论计算吻合良好。

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