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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Solvent transportation behavior of mechanically constrained agarose gels
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Solvent transportation behavior of mechanically constrained agarose gels

机译:机械约束的琼脂糖凝胶的溶剂传输行为

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摘要

The mode of transport of solvent from compressed agarose gels that were quenched at various temperatures was investigated. The compression load and the volume of the agarose gels decreased with time during compressive restraint. The decrease in volume was induced by squeezing of the solvent from the gel by compressive restraint. Relaxation of the compression load and the decrease in volume of the gels could be analyzed using a stretched exponential function; moreover, interestingly, both time constants were coupled. It is proposed that relaxation of the compression load was induced by solvent transportation (squeezing out). The hydrogel prepared at just below the sol-gel coexisting temperature (T (gel)) exhibited distinguishing behavior, characterized by an increase in the rate of the solvent transportation. It is postulated that micro-phase separation occurred in the sample quenched close to T (gel) due to spinodal decomposition, with consequent formation of relatively large solvent paths in the gel. Turbidity measurements and small angle light scattering data supported this postulate.
机译:研究了在各种温度下淬灭的压缩琼脂糖凝胶中溶剂的运输方式。在压缩约束期间,压缩负载和琼脂糖凝胶的体积随时间减小。体积的减少是由于通过压缩约束将溶剂从凝胶中挤出而引起的。压缩负荷的松弛和凝胶体积的减少可以使用拉伸的指数函数进行分析。此外,有趣的是,两个时间常数是耦合的。提出压缩负荷的松弛是由溶剂的输送(挤出)引起的。在刚好低于溶胶-凝胶共存温度(T(凝胶))的条件下制备的水凝胶表现出不同的行为,其特征在于溶剂传输速率的增加。假定由于旋节线分解,在接近T(凝胶)的位置淬灭的样品中发生了微相分离,从而在凝胶中形成了较大的溶剂通道。浊度测量和小角度光散射数据支持这一假设。

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