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Fragility and Strength in Nanoparticle Glasses

机译:纳米粒子玻璃的脆弱性和强度

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摘要

Glasses formed from nano- and micro particles form a fascinating testing ground to explore and understand the origins of vitrification. For atomic and molecular glasses, a wide range of fragilities have been observed; in colloidal systems, these effects can be emulated by adjusting the particle softness. The colloidal glass transition can range from a superexponential, fragile increase in viscosity with increasing density for hard spheres to a strong, Arrhenius-like transition for compressible particles. However, the microscopic origin of fragility and strength remains elusive, both in the colloidal and in the atomic domains. Here, we propose a simple model that explains fragility changes in colloidal glasses by describing the volume regulation of compressible colloids in order to maintain osmotic equilibrium. Our simple model provides a microscopic explanation for fragility, and we show that it can describe experimental data for a variety of soft colloidal systems, ranging from microgels to star polymers and proteins. Our results highlight that the elastic energy per particle acts as an effective fragility order parameter, leading to a universal description of the colloidal glass transition.
机译:由纳米和微粒形成的眼镜形成迷人的测试地,以探索和理解玻璃化的起源。对于原子和分子玻璃,已经观察到各种磁带病;在胶体系统中,可以通过调节颗粒柔性来仿真这些效果。胶体玻璃过渡可以从粘度的超出脆性增加,粘度的脆弱性增加,并且硬球的密度增加到强烈的Arrenius的转变,用于可压缩颗粒。然而,脆性和强度的微观起点仍然难以浮现在胶体和原子结构域中。在这里,我们提出了一种简单的模型,通过描述可压缩胶体的体积调节以维持渗透均衡,解释胶体眼镜的脆弱性变化。我们的简单模型为脆弱性提供了显微镜解释,并且我们表明它可以描述各种软胶体系统的实验数据,从微凝胶到星形聚合物和蛋白质。我们的结果强调,每个粒子的弹性能量充当有效的脆弱顺序参数,导致胶体玻璃过渡的通用描述。

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