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Chemical wave characterization of self-oscillating gelatin andpolyacrylamide gels

机译:自振振丁酰基聚酰胺凝胶的化学波特征

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Self-oscillating hydrogels driven by the Belousov-Zhabotinsky (BZ) reaction provide a unique foundation for the mimicry of autonomic biological systems. One of the key challenges for assessing practical performance limits of these materials is detailed knowledge of the chemical and mechanical characteristics of the BZ gels at various states of autonomic behavior. Recently we developed two BZ gel systems based on gelatin and polyacrylamide. The desired chemical response for effective swelling-deswelling oscillation and mechanical force production involves a delicate balance of chemical wave period, amplitude, and gel swelling properties. The chemical performance of gelatin and polyacrylamide BZ gels according to this criteria is discussed.
机译:由Belousov-Zhabotinsky(BZ)反应驱动的自振动水凝胶为自主主义生物系统的模仿提供了独特的基础。评估这些材料的实际性能限制的关键挑战之一是对自主行为​​各种州的BZ凝胶的化学和机械特性的详细了解。最近我们开发了基于明胶和聚丙烯酰胺的两个BZ凝胶系统。有效膨胀 - 抛光振荡和机械力产生的所需化学反应涉及化学波周期,振幅和凝胶溶胀性能的微妙平衡。讨论了根据该标准的明胶和聚丙烯酰胺BZ凝胶的化学性能。

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