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Biporous Crosslinked Polymers With Controlled Pore Size and Connectivity

机译:双交联聚合物,具有控制的孔径和连接

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A critically selected overview of different parameters affecting the porous features of doubly porous polymeric materials based on poly(2-hydroxyethyl methacrylate) (PHEMA) and designed via a double porogen approach is addressed. A careful investigation was undertaken so as to highlight the main advantages of the proposed double porogen approach which relied on the distinct and independent control of both porosity levels, i.e. nano-and macro-porosity. The nanoporosity level was produced via a phase separation phenomenon that occurred during the polymerization process in the presence of a porogenic solvent. To generate an interconnected macroporosity, two straightforward and versatile strategies were implemented through the use of sodium chloride (NaCl) macro-sized particles. They involved the sintering of NaCl particles prior to the generation of PHEMA-based networks. NaCl particles were fused through two different methods, either by sintering at 730 ° C or by Spark Plasma Sintering. Upon porogen removal, doubly porous PHEMA-based materials were obtained with macropores having NaCl particle imprints in the 100 mm order of magnitude, while the second porosity level laid within the 0.1-1 mm orders of magnitude, as evidenced by mercury intrusion porosimetry and scanning electron microscopy.
机译:解决了基于聚(2-羟乙基甲基丙烯酸酯)(PHEMA)和通过双致孔剂方法设计的双多孔聚合物材料的多孔特征的不同参数的概述。进行了仔细的调查,以突出所提出的双孔泡方法的主要优点,依赖于孔隙度水平的不同和独立控制,即纳米和宏观孔隙率。通过在致致溶剂存在下在聚合过程中发生的相分离现象产生纳米孔水平。为了产生相互连接的大孔,通过使用氯化钠(NaCl)宏观颗粒来实现两个直接和多功能的策略。它们在基于PHEMA的网络生成之前涉及NaCl颗粒的烧结。通过在730℃或火花等离子体烧结中烧结,通过两种不同的方法融合NaCl颗粒。在致孔剂去除时,用大量的大孔在100mm级的麦克风中获得双多孔的基于Machind,而第二孔隙率在0.1-1mm的数量级内铺设,如汞侵入孔隙瘤和扫描所证明的电子显微镜。

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