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首页> 外文期刊>The Journal of Chemical Physics >Interactions and kinetic arrest in an adhesive hard-sphere colloidal system
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Interactions and kinetic arrest in an adhesive hard-sphere colloidal system

机译:粘性硬球胶体系统中的相互作用和动力学停滞

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摘要

The evolution of microstructure and dynamics of a colloidal suspension transforming from hard-sphere to sticky hard-sphere system is investigated by small-angle x-ray scattering techniques. The colloidal system comprised of sterically stabilized silica particles suspended in a marginal solvent. The repulsive to attractive transition was realized by varying the temperature. While the particle form factor showed few changes, the structure factor of interparticle interactions exhibited liquidlike features in the attractive phase. The measured structure factors up to a gelation transition can be adequately described by the square-well model of short-ranged attractive fluids. The particle dynamics showed a continuous change from single to stretched exponential decay as the system transformed from repulsive to attractive behavior. A complete jamming of the particle dynamics was observed when the depth of attractive well attained several k_BT. Although, static and dynamic behavior are reversible with respect to temperature, considerable hystersis was noticed. The observed behavior is consistent with the existence of a gelation/attractive glass transition induced by the strong short-ranged attractive interaction in the colloidal gas-liquid coexistence region.
机译:通过小角度X射线散射技术研究了胶体悬浮物从硬球转变为粘性硬球系统的微观结构和动力学。胶体系统由悬浮在边缘溶剂中的空间稳定化二氧化硅颗粒组成。通过改变温度可以实现排斥性到吸引性的转变。尽管颗粒形状因子几乎没有变化,但颗粒间相互作用的结构因子在吸引相中表现出液体状特征。可以通过短程吸引流体的方井模型充分描述直至胶凝转变为止的所测量的结构因子。随着系统从排斥行为转变为吸引行为,粒子动力学显示出从单次衰减到连续指数衰减的连续变化。当吸引井的深度达到几k_BT时,观察到粒子动力学的完全阻塞。尽管静态和动态行为相对于温度是可逆的,但已注意到相当大的滞后现象。观察到的行为与胶体气液共存区域中强的短程吸引力相互作用引起的胶凝/吸引玻璃化转变的存在是一致的。

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