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Spatial mapping of flow-induced molecular alignment in a noncrystalline biopolymer fluid using double quantum filtered (DQF) 23Na MRI

机译:使用双量子滤波(DQF)23Na MRI在非结晶生物聚合物流体中流动诱导的分子排列的空间作图

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摘要

Flow-induced molecular alignment was observed experimentally in a non-liquid- crystalline bioplymeric fluid during developed tubular flow. The fluid was comprised of rigid rods of the polysaccharide xanthan and exhibited shear-thinning behavior. Without a requirement for optical transparency or the need for an added tracer, 23Na magic angle (MA) double quantum filtered (DQF) magnetic resonance imaging (MRI) enabled the mapping of the anisotropic molecular arrangement under flow conditions. A regional net molecular alignment was found in areas of high shear values in the vicinity of the tube wall. Furthermore, the xanthan molecules resumed random orientations after the cessation of flow. The observed flow-induced molecular alignment was correlated with the rheological properties of the fluid. The work demonstrates the ability of 23Na MA DQF magnetic resonance to provide a valuable molecular-mechanical link.
机译:在发达的管状流动过程中,在非液晶生物聚合体流体中实验观察到流动诱导的分子排列。该流体由多糖黄原胶的刚性棒组成,并表现出剪切稀化行为。不需要光学透明性或不需要添加示踪剂,23Na幻角(MA)双量子滤波(DQF)磁共振成像(MRI)可以绘制流动条件下各向异性分子排列的图。在管壁附近的高剪切值区域中发现了区域净分子排列。此外,黄原胶分子在停止流动后恢复随机取向。观察到的流动诱导的分子排列与流体的流变特性相关。这项工作证明了23Na MA DQF磁共振能够提供有价值的分子-机械联系。

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