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扩散 NMR 研究剪切诱导的多层囊泡的均匀长度标度。

Homogeneous length scale of shear-induced multilamellar vesicles studied by diffusion NMR.

机构信息

Physical Chemistry, Center of Chemistry and Chemical Engineering, Lund University, Lund, Sweden.

出版信息

J Magn Reson. 2011 Apr;209(2):291-9. doi: 10.1016/j.jmr.2011.01.024. Epub 2011 Feb 3.

Abstract

A recently developed protocol for pulsed gradient spin echo (PGSE) NMR is applied for the size determination of multilamellar vesicles (MLVs). By monitoring the self-diffusion behavior of water, the technique yields an estimate of the homogeneous length scale λ(hom), i.e. the maximum length scale at which there is local structural heterogeneity in a globally homogeneous material. A cross-over between local non-Gaussian to global Gaussian diffusion is observed by varying the experimentally defined length- and time-scales. Occasional observation of a weak Bragg peak in the PGSE signal attenuation curves permits the direct estimation of the MLV radius in favorable cases, thus yielding the constant of proportionality between λ(hom) and radius. The microstructural origin of the Bragg peak is verified through Brownian dynamics simulations and a theoretical analysis based on the center-of-mass diffusion propagator. λ(hom) is decreasing with increasing shear rate in agreement with theoretical expectations and results from (2)H NMR lineshape analysis.

摘要

最近开发的脉冲梯度自旋回波(PGSE)NMR 协议用于多层囊泡(MLV)的尺寸测定。通过监测水的自扩散行为,该技术可估算均匀长度尺度 λ(hom),即整体均匀材料中局部结构异质性的最大长度尺度。通过改变实验定义的长度和时间尺度,可以观察到局部非高斯到全局高斯扩散的交叉。在有利的情况下,PGSE 信号衰减曲线中偶尔会观察到弱布拉格峰,从而可以直接估计 MLV 的半径,从而得出 λ(hom)与半径之间的比例常数。通过布朗动力学模拟和基于质心扩散传播子的理论分析验证了布拉格峰的微观结构起源。λ(hom)随剪切速率的增加而降低,这与理论预期和(2)H NMR 线宽分析结果一致。

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