首页> 外文期刊>The Journal of Chemical Physics >Water mobility in heterogeneous emulsions determined by a new combination of confocal laser scanning microscopy,image analysis,nuclear magnetic resonance diffusometry,and finite element method simulation
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Water mobility in heterogeneous emulsions determined by a new combination of confocal laser scanning microscopy,image analysis,nuclear magnetic resonance diffusometry,and finite element method simulation

机译:通过共聚焦激光扫描显微镜,图像分析,核磁共振扩散法和有限元方法模拟的新组合测定非均相乳液中的水迁移率

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摘要

Nuclear magnetic resonance (NMR) diffusometry and confocal laser scanning microscopy (CLSM) were combined in a quantitative way in finite element calculations of water propagation in CLSM images obtained from a very heterogeneous emulsion.The propagators calculated on the basis of microstructure were Fourier transformed and subsequently compared with the echo decays obtained by the NMR diffusometry method.The results showed very good agreement between microstructure based calculations and experiments,indicating that the short gradient pulse approximation in the NMR diffusometry experiment holds for a certain q range.Furthermore,the CLSM was able to achieve a relevant two-dimensional microstructure although some discrepancy at low q values was noted.This effect is attributed to the inherent three-dimensional connectivity between the water domains in this type of structures,making the calculations slightly underestimate the water diffusion at longer distances.
机译:定量地结合了核磁共振(NMR)扩散法和共聚焦激光扫描显微镜(CLSM)来对由非常不均匀的乳液得到的CLSM图像中水的传播进行有限元计算。结果表明,基于微结构的计算和实验之间有很好的一致性,表明NMR衍射实验中的短梯度脉冲近似值在一定的q范围内保持不变。尽管注意到在低q值上存在一些差异,但仍能够实现相关的二维微观结构。此效果归因于此类结构中水域之间固有的三维连通性,从而使计算稍微低估了较长时间的水扩散距离。

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