首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Quadrupole-Central-Transition O-17 NMR Study of Nicotinamide: Experimental Evidence of Cross-Correlation between Second-Order Quadrupolar Interaction and Magnetic Shielding Anisotropy
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A Quadrupole-Central-Transition O-17 NMR Study of Nicotinamide: Experimental Evidence of Cross-Correlation between Second-Order Quadrupolar Interaction and Magnetic Shielding Anisotropy

机译:烟酰胺的四极 - 中央过渡O-17 NMR研究:二阶Quadrupolar相互作用与磁屏蔽各向异性之间的互相关的实验证据

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We have examined the O-17 quadrupole-central-transition (QCT) NMR signal from [O-17]nicotinamide (vitamin B3) dissolved in glycerol. Measurements were performed at five magnetic fields ranging from 9.4 to 35.2 T between 243 and 363 K We found that, in the ultraslow motion regime, cross-correlation between the second-order quadrupole interaction and magnetic shielding anisotropy is an important contributor to the transverse relaxation process for the O-17 QCT signal of [O-17]nicotinamide. While such a cross-correlation effect has generally been predicted by relaxation theory, we report here the first experimental evidence for this phenomenon in solution-state NMR for quadrupolar nuclei. We have discussed the various factors that determine the ultimate resolution limit in QCT NMR spectroscopy. The present study also highlights the advantages of performing QCT NMR experiments at very high magnetic fields (e.g., 35.2 T).
机译:我们研究了溶解在甘油中的[O-17]烟酰胺(维生素B3)的O-17 Quadrupole-Central-Transition(QCT)NMR信号。 在423和363k之间的五个磁场中进行测量,我们发现,在超声运动方案中,二阶四极相互作用与磁屏蔽各向异性之间的互相关是横向松弛的重要贡献者 [O-17]烟酰胺的O-17 QCT信号的方法。 虽然这种互相关效果通常通过松弛理论预测,但我们在这里报告了溶液状态NMR在Quadrupolar核的第一种实验证据。 我们讨论了确定QCT NMR光谱中最终分辨率限制的各种因素。 本研究还突出显示在非常高磁场(例如,35.2吨)处执行QCT NMR实验的优点。

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