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Magnetization transfer in a partly deuterated lyotropic liquid crystal by single- and dual-frequency RF irradiations

机译:通过单频射频照射在部分氘代的增压液晶中磁化转移

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摘要

The mechanism of magnetization transfer (MT) in a lyotropic liquid crystal made of sodium dodecyl sulfate, decanol, and water molecules is investigated by using deuterated molecules and single- and dual frequency RF irradiations. The resulting Z-spectra suggest that the decanol molecules are mainly responsible for the MT effects in this system, through proton exchange to water. This is further confirmed by monitoring the relaxation of dipolar order, which allows one to estimate the transfer rate of magnetization from decanol to water. The potential benefits of using dual-frequency RF irradiation for inducing MT effects are explored through numerical solutions to a MT model based on Provotorov's partial saturation theory. (C) 2017 Elsevier Inc. All rights reserved.
机译:通过使用氘代分子和单频射频辐射,研究了由十二烷基硫酸钠,癸醇和水分子制成的易升降液晶中的磁化转移(MT)的机理。 得到的Z光谱表明癸醇分子主要负责该系统中的MT效应,通过质子交换到水。 通过监测双极顺序的松弛进一步证实了这一点,这允许人们估计从癸醇到水的磁化的转移速率。 通过基于普选派系局部饱和理论的MT模型来探索使用双频RF照射的潜在益处。 (c)2017年Elsevier Inc.保留所有权利。

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