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The interplay between gelation and phase separation in aqueous solutions of methylcellulose and hydroxypropyl methylcellulose

机译:甲基纤维素和羟丙基甲基纤维素水溶液中凝胶化和相分离之间的相互作用

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摘要

Thermally-induced gelation in aqueous solutions of methylcellulose (MC) and hydroxypropyl methylcellulose (HPMC) has been studied by rheological, optical microscopy and turbidimetry measurements. The structural and mechanical properties of these hydrogels are dominated by the interplay between phase separation and gelation. In MC solutions, phase separation takes place almost simultaneously with gelation. An increase in the storage modulus is coupled to the appearance of a bicontinuous structure upon heating. However, a thermal gap exists between phase separation and gelation in the case of HPMC solutions. The storage modulus shows a dramatic decrease during phase separation, and then rises in the subsequent gelation. A macroporous structure forms in the gels via “viscoelastic phase separation” linked to “double phase separation”.
机译:通过流变,光学显微镜和比浊法研究了甲基纤维素(MC)和羟丙基甲基纤维素(HPMC)在水溶液中的热诱导凝胶化。这些水凝胶的结构和机械性能主要受相分离和凝胶化之间的相互作用影响。在MC溶液中,相分离几乎与凝胶化同时发生。储能模量的增加与加热时双连续结构的出现有关。但是,在HPMC溶液中,相分离和凝胶化之间存在热间隙。储能模量在相分离过程中显示出急剧的下降,然后在随后的凝胶化过程中上升。凝胶中的大孔结构通过与“双相分离”相关的“粘弹性相分离”形成。

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