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Ultra-responsive soft matter from strain-stiffening hydrogels

机译:应变增强水凝胶的超响应软物质

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摘要

The stiffness of hydrogels is crucial for their application. Nature’s hydrogels become stiffer as they are strained. This stiffness is not constant but increases when the gel is strained. This stiffening is used, for instance, by cells that actively strain their environment to modulate their function. When optimized, such strain-stiffening materials become extremely sensitive and very responsive to stress. Strain stiffening, however, is unexplored in synthetic gels since the structural design parameters are unknown. Here we uncover how readily tuneable parameters such as concentration, temperature and polymer length impact the stiffening behaviour. Our work also reveals the marginal point, a well-described but never observed, critical point in the gelation process. Around this point, we observe a transition from a low-viscous liquid to an elastic gel upon applying minute stresses. Our experimental work in combination with network theory yields universal design principles for future strain-stiffening materials.
机译:水凝胶的硬度对其应用至关重要。大自然的水凝胶在拉紧时变得更硬。该刚度不是恒定的,而是在凝胶变形时增加。例如,这种硬化被主动拉紧其环境以调节其功能的细胞使用。经过优化后,这种应变加强材料变得非常敏感,并且对应力反应非常快。然而,由于结构设计参数未知,因此在合成凝胶中尚未探索应变刚度。在这里,我们发现诸如浓度,温度和聚合物长度之类的可调参数如何影响硬化性能。我们的工作还揭示了凝胶化过程中的临界点,这是一个经过充分描述但从未观察到的临界点。围绕这一点,我们观察到在施加微小应力时从低粘度液体到弹性凝胶的转变。我们的实验工作与网络理论相结合,为未来的应变加强材料提供了通用的设计原则。

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