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Statistical model for the structure and gelation of smectite clay suspensions

机译:蒙脱石悬浮液的结构和凝胶化统计模型

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摘要

The sol-gel transition in a suspension of monodisperse, charged, disklike platelets (Laponite, i.e., a synthetic clay) is examined within a simplified statistical model. The initial ''primitive'' model of uniformly charged disks surrounded by microscopic co ions and counterions is reduced to a model of nonintersecting disks carrying a rigid point quadrupole, resulting from the electric double layers around the disks. The quadrupolar interactions favor edge-to-face pair configurations that counteract the tendency of parallel (nematic) alignment of bare disks at high densities. The local structure and phase behavior of the quadrupolar disk model is studied over a broad range of clay concentrations and quadrupole moments (which depend on the concentration of added salt) by extensive Monte Carlo simulations. The model suspension is found to undergo a reversible sol-gel transition above a critical quadrupolar coupling. The gel phase lacks long-range order, and is reminiscent of a ''house-of-cards'' structure in which most of the particles are edge-to-face to each other. The critical concentration and quadrupolar coupling constant are not inconsistent with recent experimental data on the gelation of Laponite suspensions.
机译:在简化的统计模型中检查了单分散,带电,盘状血小板(Laponite,即合成粘土)悬浮液中的溶胶-凝胶转变。最初由均匀的带电磁盘包围着微观离子和反离子的“原始”模型被简化为带有刚性点四极的不相交磁盘的模型,这是由磁盘周围的双电层引起的。四极相互作用有利于边对面配置,该配置抵消了高密度下裸磁盘平行(向列)对齐的趋势。通过广泛的蒙特卡洛模拟,研究了四极盘模型的局部结构和相行为,该模型在宽范围的粘土浓度和四极矩(取决于所添加盐的浓度)上进行了研究。发现模型悬架在临界四极耦合以上经历了可逆的溶胶-凝胶转变。凝胶相缺乏长程有序,让人想起“卡片屋”结构,其中大多数颗粒彼此面对面。临界浓度和四极偶联常数与Laponite悬浮液凝胶化的最新实验数据并不矛盾。

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