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Connecting Elasticity and Effective Interactions of Neutral Microgels: The Validity of the Hertzian Model

机译:中性微凝块的弹性和有效相互作用:赫兹模型的有效性

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摘要

An important open problem in materials science is whether a direct connection exists between single-particle elastic properties and macroscopic bulk behavior. Here, we address this question by focusing on the archetype of soft colloids: thermoresponsive microgels. These colloidal-sized polymer networks are often assumed to interact through a simple Hertzian potential, a classic model in linear elasticity theory. By developing an appropriate methodology that can be generalized to any kind of soft particle, we are able to calculate all the elastic moduli of nonionic microgels across their volume phase transition (VPT). Remarkably, we reproduce many features seen in experiments, including the appearance of a minimum in the Poisson's ratio close to the VPT. By calculating the particle-particle effective interactions and the resulting collective behavior, we find that the Hertzian model works well up to moderate values of the packing fraction.
机译:材料科学中的一个重要开放问题是单粒子弹性特性和宏观散装行为之间是否存在直接连接。 在这里,我们通过专注于软胶体的原型来解决这个问题:热响应微凝块。 这些胶体大小的聚合物网络通常假设通过简单的赫斯潜能,是线性弹性理论的经典模型。 通过开发可以广泛地向任何种类的软颗粒普化的适当方法,我们能够在其体积相转变(VPT)上计算所有非离子微凝胶的弹性模量。 值得注意的是,我们在实验中重现了许多特征,包括在靠近VPT的泊松比中的最小的出现。 通过计算粒子粒子有效的相互作用和所产生的集体行为,我们发现赫兹模型效果良好地达到包装分数的适度值。

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