首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Self-Diffusion and Collective Diffusion of Charged Colloids Studied by Dynamic Light Scattering
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Self-Diffusion and Collective Diffusion of Charged Colloids Studied by Dynamic Light Scattering

机译:动态光散射研究带电胶体的自扩散和集体扩散

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摘要

A microemulsion of decane droplets stabilized by a nonionic surfactant film is progressively charged by substitution of a nonionic surfactant molecule by a cationic surfactant.We check that the microemulsion droplets remain identical within the explored range of volume fraction (0.02-0.18) and of the number of charges per droplet (0-40).We probe the dynamics of these microemulsions by dynamic light scattering.Despite the similar structures of the uncharged and charged microemulsions,the dynamics are very different.In the neutral microemulsion,the fluctuations of polarization relax,as is well-known,via the collective diffusion of the droplets.In the charged microemulsions,two modes of relaxation are observed.The fast one is ascribed classically to the collective diffusion of the charged droplets coupled to the diffusion of the counterions.The slow one has,to our knowledge,not been observed previously neither in similar microemulsions nor in charged spherical colloids.We show that the slow mode is also diffusive and suggest that its possible origin is the relaxation of local charge fluctuations via the local exchange of droplets bearing different numbers of charges.The diffusion coefficient associated with this mode is then the self-diffusion coefficient of the droplets.
机译:通过用阳离子表面活性剂取代非离子表面活性剂分子使由非离子表面活性剂膜稳定的癸烷液滴的微乳液逐渐带电。我们检查微乳液液滴在探索的体积分数(0.02-0.18)和数量范围内保持相同每滴电荷的电荷量(0-40)。我们通过动态光散射探测这些微乳液的动力学。尽管不带电和带电微乳液的结构相似,但动力学却大不相同。在中性微乳液中,极化的波动松弛,众所周知,通过液滴的集体扩散。在带电的微乳状液中,观察到两种弛豫模式。快的一种经典地归因于带电的液滴的集体扩散与反离子的扩散。据我们所知,以前在类似的微乳状液和带电的球形胶体中都没有观察到。流动模式也是扩散性的,表明其可能的起源是通过承载不同电荷数的液滴的局部交换来放松局部电荷起伏,因此与该模式相关的扩散系数就是液滴的自扩散系数。

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