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A facile fabrication of porous fluoro-polymer with excellent mechanical properties based on high internal phase emulsion templating using PLA as co-stabilizer

机译:具有优异的机械性能的基于高内相乳液模板,使用PLA作为共稳定剂的含有优异的机械性能的容纳氟聚合物

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The stability of fluoro-high internal phase emulsion (fluoro-HIPE) systems and fluoro-polyHIPEs’ mechanical strength require further improvement to meet the requirements of future applications. In this study, we used polylactic acid (PLA) as a co-stabilizer to improve the stability of the fluoro-polyHIPE. The effects of concentration and molecular weight of PLA on the pores of the fluoro-polyHIPEs were investigated. The addition of PLA produced a porous material with narrower void size distributions, higher specific surface areas and enhanced mechanical properties compared to the fluoro-polyHIPE material without the additive. The resulting fluoro-polyHIPE showed smaller pore sizes (void diameters ranged from 1–3 μm) and an improved hydrophobic nature (contact angle can reach to 148.6°). The crush strength and Young's modulus values can reach 4.42 and 74.07 MPa, respectively, at a PLA addition of 25 wt% (oil phase composition), representing increases of 246% and 650% over fluoro-polyHIPE without PLA addition. The fluoro-poly-HIPE demonstrated excellent mechanical properties compared to many engineering foams, such as melamine, polystyrene, and even graphite foams. Improvements in the performance of porous fluoropolymer materials will be beneficial for many applications, such as chemical adsorption and separation, etc.
机译:氟 - 高内相乳液(Fluoro-Hipe)系统和氟 - 聚合的机械强度的稳定性需要进一步改善,以满足未来应用的要求。在这项研究中,我们使用聚乳酸(PLA)作为共稳定剂以改善氟 - 聚丙烯的稳定性。研究了PLA浓度和分子量对氟 - 聚合料孔的影响。加入PLA产生多孔材料,其具有较窄的空隙尺寸分布,更高的比表面积和增强的机械性能与没有添加剂的氟 - 聚丙烯材料相比。得到的氟化氟化氢含量显示孔尺寸较小(空隙直径为1-3μm),改善的疏水性质(接触角可达148.6°)。粉碎强度和杨氏模量分别可以分别达到4.42和74.07MPa,以PLA加入25wt%(油相成分),在没有PLA的添加的情况下,表示在氟 - 聚合物上增加246%和650%。与许多工程泡沫相比,氟 - 聚丙烯的氟 - 聚酰胺相比,如三聚氰胺,聚苯乙烯和甚至石墨泡沫相比,优异的机械性能。多孔含氟聚合物材料性能的改善对于许多应用是有益的,例如化学吸附和分离等。

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