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溶剂介电性质对一款900兆赫以上低温探头模型品质因数的影响

Effect of dielectric properties of solvents on the quality factor for a beyond 900 MHz cryogenic probe model.

作者信息

Horiuchi Takashi, Takahashi Masato, Kikuchi Jun, Yokoyama Shigeyuki, Maeda Hideaki

机构信息

RIKEN Genomic Sciences Center, 1-7-22 Tsurumi, Yokohama 230-0045, Japan.

出版信息

J Magn Reson. 2005 May;174(1):34-42. doi: 10.1016/j.jmr.2005.01.004.

Abstract

A previous report by Kelly et al. [J. Am. Chem. Soc. 124 (2002) 12013] indicated that the ionic conductivity of aqueous solution produces a significant contribution to the sensitivity loss in high-resolution NMR equipped with a cryogenically cooled probe. The loss in a sample solution contains two contributions: one from the ionic conductivity and the other from the dielectric loss; the latter is especially important at high frequencies such as above 900 MHz. Here, we investigated the effect of the dielectric conductivity on the quality factor of a 930 MHz cryogenic probe model; in particular, it deals with the ionic aqueous solutions and organic solvents commonly used for NMR in biological research and the chemistry of natural compounds. The sample quality factor, Qs, at first increases with the real part of the relative dielectric permittivity epsilon' and then saturates. In the case of polar organic solvents, the transverse electric field on the sample decreases with epsilon', resulting in an increase of Qs. In the case of non-polar organic solvents, the dielectric conductivity is so small that the gradient of the increase is steep, resulting in much larger Qs though the epsilon' is small. The effect of the transverse electric field is negligible if the epsilon' becomes large, thus the loss for ionic aqueous solution is mainly governed by a loop current induced in the sample solution. As the induced electromotive force is independent of the epsilon', the Qs is saturated at high values of epsilon'. Based on the Qs obtained with the cryogenic probe model, the sensitivity for the cryogenic probe is expected to be as follows: the loss in sensitivity by loading water is more than 66%, i.e., the effect of the dielectric conductivity of water is remarkable at high frequencies; polar organic solvent suffers much larger losses, which is due to the enhancement of the effective sample resistance by the effect of epsilon'; a non-polar organic solvent is nearly free of the sensitivity loss as the dielectric conductivity is negligible; the reverse micelle behaves similarly.

摘要

凯利等人之前的一份报告[《美国化学会志》124 (2002) 12013]指出,水溶液的离子电导率对配备低温冷却探头的高分辨率核磁共振仪中的灵敏度损失有显著影响。样品溶液中的损失包含两个因素:一个来自离子电导率,另一个来自介电损耗;后者在诸如900 MHz以上的高频下尤为重要。在此,我们研究了介电导率对一款930 MHz低温探头模型品质因数的影响;具体而言,涉及生物研究和天然化合物化学中核磁共振常用的离子水溶液和有机溶剂。样品品质因数Qs起初随相对介电常数ε'的实部增加,然后达到饱和。在极性有机溶剂的情况下,样品上的横向电场随ε'减小,导致Qs增加。在非极性有机溶剂的情况下,介电导率非常小,以至于增加的梯度很陡,尽管ε'较小,但Qs要大得多。如果ε'变大,横向电场的影响可以忽略不计,因此离子水溶液的损失主要由样品溶液中感应的环流控制。由于感应电动势与ε'无关,Qs在ε'的高值时达到饱和。基于用低温探头模型获得的Qs,低温探头的灵敏度预计如下:加载水导致的灵敏度损失超过66%,即水的介电导率在高频下的影响显著;极性有机溶剂的损失要大得多,这是由于ε'的影响使有效样品电阻增加;非极性有机溶剂几乎没有灵敏度损失,因为介电导率可以忽略不计;反胶束的表现类似。

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