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Synthesis of conductive macroporous composite polymeric materials using porogen-free method

机译:使用孔引导法合成导电大孔复合聚合物材料

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We report the synthesis of stable conductive macroporous materials by chemical oxidative polymerization of aniline-(2-acrylamido-2-methylpropanesulfonic acid) in the presence of polystyrene nanoparticles (PS-NPs). The presented method allows, without using any pore generating agent, to prepare conductive highly porous materials with tunable properties. In particular, by changing the composition, i.e. ratio between poly(aniline-(2-acrylamido-2-methylpropanesulfonic acid)) (PANI-PAAMPSA) and PS-NPs, we were able to modulate structure moieties of PANI-PAAMPSA on the surface of PS-NPs as well as the size and internal structure of the formed microclusters. The materials exhibited high porosities up to 80% and surface areas up to 18 m(2)/g depending on the ratio between PS and PANI-PAAMPSA. In addition, by differential scanning calorimetry (DSC), it was observed that the PANI-PAAMPSA coating serves as a thermal barrier for PS-NPs. Such a high thermal stability of the prepared microclusters, up to 350 degrees C,was confirmed by the thermal gravimetric analysis (TGA). Despite the presence of non-conductive PS-NPs, the synthesized composite materials exhibited specific conductivities in the order of 10(-3) S cm(-1), comparable to aniline-based conductive polymers studied in the literature.
机译:我们在聚苯乙烯纳米粒子(PS-NPS)存在下,通过化学氧化聚合来报告稳定导电大孔材料的合成苯胺 - (2-丙基酰胺-2-甲基丙二磺酸)。呈现的方法允许在不使用任何孔发生剂的情况下制备具有可调谐性质的导电高孔材料。特别地,通过改变聚合物,即聚(苯胺 - (2-丙烯酰基-2-甲基丙二磺酸)之间的比例(胰酸碱酰胺 - PAPAMSA)和PS-NPS之间的比例,我们能够调节表面上PANI-PPAMPSA的结构部分PS-NPS以及所形成的微燃烧室的尺寸和内部结构。根据PS和PAN​​I-Paampsa之间的比率,该材料表现出高达80%和高达18μm(2)/ g的表面积。另外,通过差示扫描量热法(DSC),观察到Pani-Paampsa涂层用作PS-NPS的热屏障。通过热重分析(TGA)确认制备的微团簇的这种高热稳定性,高达350℃。尽管存在非导电PS-NPS,但是合成的复合材料呈大约10(-3)厘米(-1)的比例表现出特异性导电性,与文献中研究的苯胺的导电聚合物相当。

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