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Jamming and overpacking fuzzy microgels: Deformation interpenetration and compression

机译:干扰和过度包装模糊微凝胶:变形互穿和压缩

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摘要

Tuning the solubility of fuzzy polymer microgels by external triggers, such as temperature or pH, provides a unique mechanism for controlling the porosity and size of colloidal particles on the nanoscale. As a consequence, these smart microgel particles are being considered for applications ranging from viscosity modifiers and sensing to drug delivery and as models for the glass and the jamming transition. Despite their widespread use, little is known about how these soft particles adapt their shape and size under strong mechanical compression. We use a combination of precise labeling protocols and two-color superresolution microscopy to unravel the behavior of tracer microgels inside densely packed soft solids. We find that interpenetration and shape deformation are dominant until, in the highly overpacked state, this mechanism saturates and the only remaining way to further densify the system is by isotropic compression.
机译:通过外部触发因素(例如温度或pH)调节模糊聚合物微凝胶的溶解度,为控制纳米级胶体颗粒的孔隙率和尺寸提供了独特的机制。结果,这些智能的微凝胶颗粒被认为可以用于从粘度调节剂和传感到药物输送的各种应用,并且可以作为玻璃和堵塞转变的模型。尽管已广泛使用它们,但对于这些软颗粒在强机械压缩下如何适应其形状和尺寸的了解却很少。我们结合使用了精确的标记方案和双色超分辨率显微镜,以揭示示踪剂微凝胶在密堆积软固体中的行为。我们发现,互穿和形状变形是主要的,直到在高度堆积状态下,该机制达到饱和,并且进一步使系统致密的唯一剩余方法是通过各向同性压缩。

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