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Rotational diffusion of colloid spheres in concentrated suspensions studied by deuteron NMR

机译:氘核NMR研究浓缩悬浮液中胶体球的旋转扩散

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摘要

We present a study of the application of deuteron-nuclear magnetic resonance spectroscopy (NMR) to the investigation of the rotational diffusion of spherical colloidal particles. We performed NMR pulse experiments on colloidal suspensions of polystyrene latex spheres In water-glycerol mixtures in a wide range of particle volume fractions phi from the dilute suspension up to phi=0.504. We have analyzed the stimulated echo NMR signal in the time domain. The full shape of the orientational correlation function deviates from an exponential behavior in the whole phi range examined. We evaluate the rotational diffusion;coefficient and calculate-its phi dependence up to the phi(2) term in view of the theory proposed recently [V. Degiorgio, R. Piazza, and R. B. Jones, Phys. Rev. E 52, 2707 (1995)], which considers the effect of two- and three-body hydrodynamic interactions upon particle reorientation. We find considerable slowing down of sphere reorientation for phi greater than or equal to 0.2. The agreement between experimental results and theoretical considerations is satisfactory.
机译:我们提出了氘核核磁共振波谱(NMR)在球形胶体粒子旋转扩散研究中的应用研究。我们在水-甘油混合物中的聚苯乙烯胶乳球体的胶体悬浮液中进行了NMR脉冲实验,其粒径范围从稀悬浮液到phi = 0.504的粒径分布范围很广。我们在时域中分析了受激回波NMR信号。定向相关函数的完整形状在整个phi范围内都偏离指数行为。根据最近提出的理论,我们评估旋转扩散系数直至phi(2)项的phi依赖性。 Degiorgio,R。Piazza和R.B. Jones,物理学。 Rev. E 52,2707(1995)],其中考虑了两体和三体流体动力相互作用对粒子重新定向的影响。我们发现,对于大于或等于0.2的phi,球体重新定向的速度会大大降低。实验结果和理论考虑之间的一致性是令人满意的。

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