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Characterization of turbid colloidal suspensions using light scattering techniques combined with cross-correlation methods

机译:使用光散射技术结合互相关方法表征浑浊的胶体悬浮液

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The ability to characterize colloidal suspensions by means of dynamic light scattering is in general limited to systems with negligible contributions from multiple scattering. For larger particle sizes with high scattering contrast this immediately limits the technique to very low concentrations. A promising solution of this problem is to suppress multiple scattering in dynamic light scattering experiments using cross-correlation schemes. Based on these considerations we have constructed a so-called 3D cross-correlation experiment with which we are able to characterize extremely turbid suspensions. We have measured monomodal and bimodal suspensions of latex particles of relatively high volume fraction. The results show clearly that we are able to measure the dynamic structure factor in concentrated polydisperse suspensions with dynamic light scattering. Combining static and dynamic light scattering measurements for characterizing turbid suspensions the single scattering particle form factor and also the static structure factor can be evaluated. We demonstrate that the implementation of a 3D cross-correlation scheme is a powerful method in suppressing multiple scattering contributions in light scattering experiments and opens a wide field of characterization of colloidal dispersions with high turbidity without having to resort to high dilution. (C) 1998 Academic Press. [References: 17]
机译:通过动态光散射表征胶体悬浮液的能力通常仅限于多次散射贡献可忽略不计的系统。对于具有高散射对比度的较大粒径,这立即将技术限制在非常低的浓度。该问题的有希望的解决方案是在使用互相关方案的动态光散射实验中抑制多重散射。基于这些考虑,我们构建了一个所谓的3D互相关实验,通过该实验我们可以表征极其浑浊的悬浮液。我们已经测量了体积分数相对较高的乳胶颗粒的单峰和双峰悬浮液。结果清楚地表明,我们能够通过动态光散射来测量浓缩多分散悬浮液中的动态结构因子。结合静态和动态光散射测量来表征混浊的悬浮液,可以评估单个散射颗粒的形状因子以及静态结构因子。我们证明了3D互相关方案的实现是一种在光散射实验中抑制多重散射贡献的有力方法,并且无需使用高稀释度即可打开表征浊度高的胶体分散体的广阔领域。 (C)1998年学术出版社。 [参考:17]

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