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Structure and aggregation of colloids immersed in critical solvents

机译:浸泡在关键溶剂中的胶体的结构和聚集

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We consider an ensemble of spherical colloidal particles immersed in a near-critical solvent such as a binary liquid mixture close to its critical demixing point. The emerging long-ranged fluctuations of the corresponding order parameter of the solvent drive the divergence of the correlation length. Spatial confinements of these critical fluctuations by colloidal solute particles, acting as cavities in the fluctuating medium, restrict and modify the fluctuation spectrum in a way which depends on their relative configuration. This results in effective, so-called critical Casimir forces (CCFs) acting on the confining surfaces. Using the available knowledge about CCFs we study the structure and stability of such colloidal suspensions by employing an approach in terms of effective, one-component colloidal systems. Applying the approximation of pairwise additive CCFs we calculate the radial distribution function of the colloids, which is experimentally accessible.We analyze colloidal aggregation due to CCFs and thus allude to previous experimental studies which are still under debate.
机译:我们考虑将球形胶体颗粒浸入近临界溶剂(如接近其临界分解点的二元液体混合物)中。溶剂的相应顺序参数的新出现的远距离波动​​导致相关长度的发散。这些临界波动的空间限制是由胶态溶质颗粒(在波动介质中充当空腔)来限制和修改波动谱的,具体方式取决于波动谱的相对配置。这导致作用在约束表面上的有效的所谓卡西米尔临界力(CCF)。利用有关CCF的现有知识,我们通过采用一种有效的单组分胶体系统的方法来研究此类胶体悬浮液的结构和稳定性。应用成对加性CCF的近似值,我们可以计算出胶体的径向分布函数,这在实验上是可访问的。我们分析了CCF引起的胶体聚集,因此暗示了之前仍在争论中的实验研究。

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