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首页> 外文期刊>Physical review, E >Dramatic slowing of compositional relaxations in the approach to the glass transition for a bimodal colloidal suspension
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Dramatic slowing of compositional relaxations in the approach to the glass transition for a bimodal colloidal suspension

机译:在双模胶体悬浮液中玻璃化转变方法中的组成松弛急剧减慢

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摘要

Molecular dynamics simulation was used to study a model colloidal suspension with two species of slightly different sized colloidal particles in an explicit solvent. In this work we calculated the four interdiffusion coefficients for the ternary system, which were then used to calculate the decay coefficients D_± of the two independent diffusive modes. We found that the slower D_- decay mode, which is associated with the system's ability to undergo compositional changes, was responsible for the long-time decay in the intermediate scattering function. We also found that a decrease in D_- to negligible values at a packing fraction of Φg = 0.592 resulted in an extreme slow-down in the long-time decay of the intermediate scattering function often associated with the glass transition. Above Φg, the system formed a long-lived metastable state that did not relax to its equilibrium crystal state within the simulation time window. We concluded that the inhibition of crystallization was caused by the inability of the quenched fluid to undergo the compositional changes needed for the formation of the equilibrium crystal.
机译:分子动力学模拟用于研究模型胶体悬浮液,在明确的溶剂中用两种略微不同大小的胶体颗粒进行模型胶体悬浮液。在这项工作中,我们计算了三元系统的四个相互作用系数,然后用于计算两个独立扩散模式的衰减系数D_±。我们发现,与系统进行组成变化的能力相关的较慢的D_衰减模式对中间散射功能的长期衰减负责。我们还发现,在φG= 0.592的包装分数下的D_-到可忽略的值降低导致中间散射函数的长时间衰减中的极端慢下降,该散射函数通常与玻璃化转变相关联。高于φG,该系统形成了长期悬浮的亚稳态,在模拟时间窗口内没有放松其平衡晶体状态。我们得出结论,结晶的抑制是由淬火流体不能经历形成平衡晶体所需的组成变化引起的。

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