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Apparent strength versus universality in glasses of soft compressible colloids

机译:软可压缩胶体玻璃的表观强度与通用性

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摘要

Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibrium with their surroundings. This has a profound effect on the behaviour of dense solutions of these polymeric colloids, most notably their ability to swell and deswell depending on the osmotic pressure of the system as a whole. Here we develop a minimal simulation model to treat this intrinsic volume regulation in order to explore the effects this has on the properties of dense solutions close to a liquid-solid transition. We demonstrate how the softness dependent volume regulation of particles gives rise to an apparent change in the fragility of the colloidal glass transition, which can be scaled out through the use of an adjusted volume fraction that accounts for changes in particle size. Moreover, we show how the same model can be used to explain the selective deswelling of soft microgels in a crystalline matrix of harder particles leading to robust crystals free of defects. Our results not only highlight the non-trivial effects of osmotic regulation in governing the apparent physics of microgel suspensions, but also provides a platform to efficiently account for particle deswelling in simulations.
机译:微凝胶胶体是溶剂溶胀的微观尺寸的水凝胶颗粒,与周围环境处于渗透平衡状态。这对这些聚合物胶体的致密溶液的行为具有深远的影响,最显着的是它们的溶胀和消胀能力取决于整个系统的渗透压。在这里,我们开发了一个最小的模拟模型来处理这种固有的体积调节,以探索其对接近液固转变的稠溶液性质的影响。我们证明了颗粒的取决于体积的柔软度调节如何引起胶态玻璃化转变的脆性的明显变化,这可以通过使用调整后的体积分数来解决,该体积分数考虑了粒径的变化。此外,我们展示了如何使用同一模型来解释较软颗粒在较硬颗粒的晶体基质中的选择性溶胀,从而导致无缺陷的坚固晶体。我们的研究结果不仅强调了渗透调节在控制微凝胶悬浮液的表观物理学方面的重要作用,而且还提供了一个平台来有效地模拟模拟中的颗粒溶胀。

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