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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Another challenge to paramagnetic relaxation theory: a study of paramagnetic proton NMR relaxation in closely related series of pyridine-derivatised dysprosium complexes
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Another challenge to paramagnetic relaxation theory: a study of paramagnetic proton NMR relaxation in closely related series of pyridine-derivatised dysprosium complexes

机译:顺磁弛豫理论的另一个挑战:在吡啶衍生的dy络合物系列密切相关的顺磁质子NMR弛豫研究

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摘要

Measurements of the relaxation rate behaviour of two series of dysprosium complexes have been performed in solution, over the field range 1.0 to 16.5 Tesla. The field dependence has been modelled using Bloch-Redfield-Wangsness theory, allowing estimates of the electronic relaxation time, T-1e, and the size of the magnetic susceptibility, mu(eff), to be made. Changes in relaxation rate of the order of 50% at higher fields were measured, following variation of the para-substituent in the single pyridine donor. The magnetic susceptibilities deviated unexpectedly from the free-ion values for certain derivatives in each series examined, in a manner that was independent of the electron-releasing/withdrawing ability of the pyridine substituent, suggesting that the polarisability of just one pyridine donor in octadenate ligands can play a significant role in defining the magnetic susceptibility anisotropy.
机译:已经在溶液中在1.0至16.5 Tesla的电场范围内对两个系列的complex配合物的弛豫速率行为进行了测量。场相关性已使用Bloch-Redfield-Wangsness理论建模,可以估计电子弛豫时间T-1e和磁化率大小mu(eff)。在单个吡啶供体中对位取代基的变化之后,在较高的电场下测量了弛豫率大约50%的变化。磁化率出乎意料地偏离了所考察的每个系列中某些衍生物的自由离子值,其方式与吡啶取代基的电子释放/吸收能力无关,这表明十八个配体中只有一个吡啶供体的极化率在定义磁化率各向异性方面可以发挥重要作用。

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