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首页> 外文期刊>Comptes Rendus Chimie >Instermolecular nuclear relaxation in paramagnetic solutions:from free radicals to rare earths
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Instermolecular nuclear relaxation in paramagnetic solutions:from free radicals to rare earths

机译:顺磁性溶液中的分子间核弛豫:从自由基到稀土

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摘要

The priniples of the intermolecular relaxation of a nuclear spin by its fluctuating magnetic dipolar interactions with the electronic spins of the paramagnetic surrounding species in solution are briefly recalled.It is show that a very high dynamic nuclear polarization (DNP) of solvent protons is obtained by saturating allowed transitions of free radicals with a hyperfine structure,and that this effect can be used in efficient Earth field magnetometere.Recent work on trivalent lanthanide Ln~(3+) aqua complexes in heavy water solutions is discussed,including paramagnetic shift and relaxation rate measurements of the ~1H NMR lines of probe solutes.This allows a determination of the effective electronic magnetic moments of the various Ln~(3+) ions in these complexes,and an estimation of their longitudinal and transverse electronic relaxation times T_1e and T_2e.Particular attentio is given to Gd(III) hydrated chelates which can serve as contrast agents in magective resonance imaging (MRI).The full experimental electronic paramagnetic resonance (EPR) spectra of these complexes can be interpreted within the Redfield relaxation theory.Monte-Carlo simulations are used to explore situations beyond the validity of the Redfield approximation.For each Gd(III) complex,the EPR study leads to an accurate prediction of I_1e,which can be also derived from an independent relaxation dispersion study of the protons of the probe solutes.
机译:简要回顾了核自旋的分子间弛豫的原理,即其与溶液中顺磁性周围物种的电子自旋的起伏的磁偶极相互作用,表明通过溶剂质子可以获得很高的动态核极化(DNP)。用超细结构饱和自由基的允许跃迁,并且该效应可用于有效的地球磁场磁力计中。讨论了在重水溶液中对三价镧系Ln〜(3+)水配合物的最新研究,包括顺磁位移和弛豫率测量探针溶质的〜1H NMR谱线。这可以确定这些络合物中各种Ln〜(3+)离子的有效电子磁矩,并可以估算其纵向和横向电子弛豫时间T_1e和T_2e。特别注意Gd(III)的水合螯合物,它们可在核磁共振成像(MRI)中用作造影剂这些配合物的完整实验电子顺磁共振(EPR)光谱可以在Redfield弛豫理论中解释.Monte-Carlo模拟用于探索超出Redfield逼近范围的情况。对于每个Gd(III)配合物,EPR这项研究可以得出I_1e的准确预测,也可以从对探针溶质的质子的独立弛豫分散研究中得出。

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