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Phase Separation in Alkoxy-Derived Silica System Containing Polyacrylamide

机译:含聚丙烯酰胺的烷氧基化二氧化硅体系中的相分离

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By inducing phase separation parallel to the sol-gel transition of alkoxy-derived silica systems, gels having both macroporous and mesoporous structures can be obtained. Using poly(acrylamide) (PAAm) as a phase-separation inducer, macro/mesoporous silica gels were synthesized. After solvent exchange by water, the size distribution of mesopores of wet gels was evaluated by thermoporometry using a differential scanning calorimetry (DSC). Alternatively, gels were evaporation-dried after solvent exchange by ethanol or water/ethanol, followed by heat-treatment to completely remove volatile and organic components. Characterization of the dried or heat-treated samples was carried out using a scanning electron microscope (SEM) and by nitrogen adsorption measurements. Experimental results showed that the interaction between PAAm and silica is not so strong as the case of polymers having poly(oxyethylene) chains. The contribution of the secondary phase separation within the crosslinking silica-rich phase was suggested to be responsible for the mesopore formation in the PAAm-silica system.
机译:通过诱导与烷氧基衍生的二氧化硅体系的溶胶-凝胶转变平行的相分离,可以获得具有大孔和中孔结构的凝胶。使用聚丙烯酰胺(PAAm)作为相分离诱导剂,合成了大/介孔硅胶。在用水交换溶剂之后,使用差示扫描量热法(DSC)通过热孔法评价湿凝胶的中孔的尺寸分布。或者,在用乙醇或水/乙醇交换溶剂后,将凝胶蒸发干燥,然后进行热处理以完全除去挥发性和有机成分。使用扫描电子显微镜(SEM)并通过氮吸附测量对干燥或热处理过的样品进行表征。实验结果表明,PAAm与二氧化硅之间的相互作用不像具有聚氧乙烯链的聚合物那样强。建议在富含交联二氧化硅的相中进行第二相分离,这是造成PAAm-二氧化硅体系中介孔形成的原因。

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