Wang Yongkang, Azhar Umair, He Jinxuan, Chen Huiying, Zhao Jianzhi, Pang Ai-Min, Geng Bing
Shandong Provincial Key Laboratory of Fluorine Chemistry and Chemical Materials, School of Chemistry and Chemical Engineering, University of Jinan Jinan 250022 China
Science and Technology on Aerospace Chemical Power Laboratory Xiangyang Hubei 441003 China
RSC Adv. 2019 Dec 6;9(69):40513-40522. doi: 10.1039/c9ra08226c. eCollection 2019 Dec 3.
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,
氟代高内相乳液(fluoro-HIPE)体系的稳定性以及氟代聚高内相乳液(fluoro-polyHIPE)的机械强度需要进一步提高,以满足未来应用的需求。在本研究中,我们使用聚乳酸(PLA)作为共稳定剂来提高氟代聚高内相乳液的稳定性。研究了PLA的浓度和分子量对氟代聚高内相乳液孔隙的影响。与未添加添加剂的氟代聚高内相乳液材料相比,添加PLA后产生了一种孔隙尺寸分布更窄、比表面积更高且机械性能增强的多孔材料。所得的氟代聚高内相乳液显示出更小的孔径(孔隙直径范围为1 - 3μm)和改善的疏水性(接触角可达148.6°)。在PLA添加量为25 wt%(油相组成)时,抗压强度和杨氏模量值分别可达4.42和74.07 MPa,相较于未添加PLA的氟代聚高内相乳液分别提高了246%和650%。与许多工程泡沫材料,如三聚氰胺、聚苯乙烯甚至石墨泡沫相比,氟代聚高内相乳液表现出优异的机械性能。多孔含氟聚合物材料性能的改善将有利于许多应用,如化学吸附和分离。