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Planar lamellae and onions: a spatially resolved rheo-NMR approach to the shear-induced structural transformations in a surfactant model system

机译:平面薄片和洋葱:表面活性剂模型系统中剪切诱导的结构转变的空间分辨rheo-NMR方法

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摘要

The shear-induced transformations between oriented planar lamellae and a state of closely packed multilamellar vesicles (MLVs) in a lyotropic nonionic surfactant model system were studied by the combination of nuclear magnetic resonance (NMR) spectroscopy and diffusometry with magnetic resonance imaging (MRI). (2)H NMR imaging confirmed the discontinuous nature of the transition from onions to planar lamellae, revealing the spatial coexistence of both states within the gap of the cylindrical Couette geometry. On the other hand, NMR diffusion measurements in three principal directions and at various values of strain strongly suggest that a multi-lamellar cylindrical or undulated intermediate structure exists during the continuous and spatially homogeneous transition from planar lamellae to MLVs.
机译:通过溶核非离子表面活性剂模型系统中的定向平面薄层与紧密堆积的多层囊泡(MLV)状态之间的剪切诱导转变,是通过核磁共振(NMR)光谱和扩散测量与磁共振成像(MRI)的组合进行了研究。 (2)1 H NMR成像证实了从洋葱到平面薄片过渡的不连续性,揭示了在圆柱形库埃特几何形状的间隙内两种状态的空间共存。另一方面,在三个主要方向上以及在各种应变值下的NMR扩散测量结果强烈表明,在从平面薄片到MLV的连续且空间均匀的过渡过程中,存在多层圆柱形或波状中间结构。

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