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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Elastic strain-hardening and shear-thickening exhibited by thermoreversible physical hydrogels based on poly(alkylene oxide)-grafted hyaluronic acid or carboxymethylcellulose
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Elastic strain-hardening and shear-thickening exhibited by thermoreversible physical hydrogels based on poly(alkylene oxide)-grafted hyaluronic acid or carboxymethylcellulose

机译:基于聚(环氧烷) - 移植透明质酸或羧甲基纤维素的热可逆物理水凝胶表达的弹性应变硬化和剪切增稠

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The formation of strongly elastic physical gels based on poly(alkylene oxide)-grafted hyaluronan or carboxymethylcellulose, exhibiting both shear-thickening and strain-hardening have been studied using rheometry and explained using a slightly different interpretation of the transient network theory. The graft copolymers were prepared by a quantitative coupling reaction. Their aqueous solutions displayed a thermoreversible continuous transition from Newtonian fluid to viscoelastic solid which could be controlled by the reaction conditions. The evolution of all material properties of the gel could be categorized into two distinct temperature regimes with a fast evolution at low temperatures followed by a slow evolution at high temperatures. The activation energy of the zero shear viscosity and the relaxation time of the graft inside the interconnecting microdomains were almost identical to each other in both temperature regimes. This suggests that the number of microdomains remained approximately constant whereas the aggregation number inside the microdomains increased according to the binodal curve of the thermosensitive graft.
机译:基于聚(环氧烷)强烈弹性物理凝胶接枝的透明质酸或羧甲基纤维素,同时表现出剪切稠化和应变硬化已经使用流变仪研究以及使用所述瞬时网络理论的一个稍微不同的解释说明的形成。接枝共聚物是由一个定量的偶联反应制备。它们的水溶液显示从牛顿流体到粘弹性固体,其可通过在反应条件来控制的热可逆连续过渡。凝胶的所有材料性能的发展可以被分类为两种不同的温度体系在低温下,然后在高温下缓慢进化快速进化。零剪切粘度的激活能和互连微区内的移植物的弛豫时间是在这两个温度状况几乎彼此相同。这表明,微区的数量保持大致恒定,而微区内的集合数根据热敏接枝的双节线增加。

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