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Ordering, dynamics and phase transitions in charged colloids

机译:带电胶体的有序,动力学和相变

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Among the various soft matter systems, charge stabilized colloidal dispersions have gained recognition as tremendously useful model condensed matter systems because of their structural ordering and the rich phase behavior. This paper is a review of the work done in the last few years related to structural ordering and phase transitions brought about by parameters such as pressure, surface charge density and salt concentration. The dynamics in colloidal crystals and dense suspensions is influenced by hydrodynamic interactions arising due to the intervening viscous fluid. Lattice dynamics of colloidal crystals presents a nice testing ground for theories of hydrodynamic interaction. Apart from reviewing the measurements of phonon dispersion curves in thin colloidal crystals, we present here recent dynamic light scattering results on bulk colloidal crystals. The dynamics in colloidal liquids and colloidal glasses are also covered. Though colloidal liquids of low charge density particles freeze into a homogenous crystalline or a glassy state, they remain inhomogeneous when the charge density is beyond a critical value. Recently, this inhomogeneous state is confirmed to be a gas-solid coexistence. This observation of gas-solid coexistence in highly charged colloids along with the earlier observations of vapor-liquid condensation and a reentrant transition have created a debate on the existence of long-range attraction in the effective pair potential U (r) of like-charged colloidal particles. U(r) was measured directly using optical microscopy. However, the limitations in using the optical microscopy technique for determining U(r) in dilute suspensions are discussed. These limitations can be circumvented by employing confocal microscopy. We present our recent observation of stable bound pairs in very dilute and highly charged colloidal suspensions using confocal microscopy and the existence of an attractive minimum in the measured U(r) of like-charged particles. These observations provide direct evidence for the existence of counter-ion mediated long-range attraction between like-charged colloids. The need for understanding the microscopic mechanism of counter-ion mediated attraction is highlighted. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在各种软物质系统中,电荷稳定的胶体分散体由于其结构有序性和富相行为,已被公认为是极为有用的模型凝聚物系统。本文回顾了过去几年中由压力,表面电荷密度和盐浓度等参数带来的与结构有序和相变有关的工作。胶体晶体和致密悬浮液的动力学受粘滞流体介入而产生的水动力相互作用的影响。胶体晶体的晶格动力学为流体力学相互作用的理论提供了很好的试验基础。除了回顾薄胶体晶体中声子色散曲线的测量值之外,我们在这里还介绍了最近在块状胶体晶体上的动态光散射结果。还涵盖了胶体液体和胶体玻璃的动力学。尽管低电荷密度颗粒的胶体液体会冻结成均质的晶体或玻璃态,但当电荷密度超过临界值时,它们会保持不均匀。近来,证实该不均匀状态是气固共存。这种对高电荷胶体中气固共存的观察,以及对汽液冷凝和折返过渡的早期观察,引起了人们对存在于带正电荷的有效对电位U(r)中的远距离吸引的争论胶体颗粒。使用光学显微镜直接测量U(r)。但是,讨论了使用光学显微镜技术确定稀悬液中U(r)的局限性。这些限制可以通过使用共聚焦显微镜来规避。我们目前使用共聚焦显微镜在非常稀和高电荷的胶体悬浮液中观察到稳定结合对的最新观察,并且在测量的带正电粒子的U(r)中存在一个吸引人的最小值。这些观察结果为荷电相似的胶体之间存在抗衡离子介导的远距离吸引提供了直接的证据。强调了需要了解抗衡离子介导的吸引的微观机制。 (c)2006 Elsevier Ltd.保留所有权利。

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