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Brownian Dynamics Study of Gel-Forming Colloidal Particles

机译:凝胶形成胶体颗粒的布朗动力学研究

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Brownian dynamics simulations are used to study the formation process of colloidal gels and the effect of particle concentration on their rheological properties. To model the interaction between particles, we adopted an R-shifted 12-6 Lennard-Jones (LJ) potential, which allows independent control of the particle size and attractive range. For a short-ranged potential, the percolated network characteristic of a gel exhibited a viscoelastic behavior of weak gels. The storage modulus (G') increased with the particle concentration increase. Moreover, the dependency of storage modulus (C) on the particle concentration followed a power law function, which is commonly reported in the literature for experimental data. Simulating frequency sweep tests showed that the system behaved as a liquid-like or solid-like material, depending on the frequency applied. The crossover frequency, i.e.. the frequency at which G' and G" are equal, appears to shift slightly to lower values when the particle concentration increases, suggesting a more solid-like behavior for systems with higher particle concentration. During gelation, the storage modulus increases as a stretched exponential and reaches a constant value at long times.
机译:布朗动力学模拟用于研究胶体凝胶的形成过程以及颗粒浓度对其流变性的影响。为了模拟颗粒之间的相互作用,我们采用了R移位的12-6 Lennard-Jones(LJ)电位,该电位允许独立控制颗粒大小和吸引范围。对于短程电势,凝胶的渗透网络特性表现出弱凝胶的粘弹性行为。储能模量(G')随颗粒浓度的增加而增加。此外,储能模量(C)对颗粒浓度的依赖性遵循幂定律函数,这在文献中通常针对实验数据进行报道。模拟扫频测试表明,取决于所应用的频率,系统的行为类似于液体或固体。当颗粒浓度增加时,交叉频率(即G'和G“相等的频率)似乎会略微移至更低的值,这表明颗粒浓度较高的系统更像固体。在凝胶化过程中,储存模量随着拉伸指数的增加而增加,并在长时间内达到恒定值。

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