首页> 外文期刊>The Journal of Supercritical Fluids >Grafting of styrene/maleic anhydride copolymer onto PVDF membrane by supercritical carbon dioxide:Preparation, characterization and biocompatibility
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Grafting of styrene/maleic anhydride copolymer onto PVDF membrane by supercritical carbon dioxide:Preparation, characterization and biocompatibility

机译:超临界二氧化碳将苯乙烯/马来酸酐共聚物接枝到PVDF膜上:制备,表征和生物相容性

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摘要

Herein we report the surface modification of poly(vinylidene fluoride)(PVDF)microporous membrane via thermally induced graft copolymer-ization with maleic anhydride(Man)/styrene(St)in supercritical carbon dioxide(SC CO2).SC CO2,as a solvent and carrier agent,could accelerate mass transfer of monomers inside polymer matrixes and then facilitate the graft copolymerization on the surface of the membrane and within membrane pores,which were confirmed by FT-IR/ATR and XPS spectra together with SEM photographs.The effects of SC CO2 pressure and temperature and the monomer concentration on the graft copolymerization were investigated.The modified PVDF membranes containing from 0 to 7 wt.% of grafted St-Man copolymer(SMA)were prepared and analysed in terms of surface microstructure,composition,hydrophilicity and biocompatibility.Solid-state 13C CP/MAS NMR and DSC indicated that the grafted SMA on the PVDF membrane had the alternative sequence structure and formed the different phases in the modified membrane,where the grafted SMA was associated with T_g of 122.8°C and the PVDF matrix with T_m of 161.2°C.The static contact angle measurements revealed that remarkable and permanent hydrophilicity was obtained upon grafting SMA.The experiments of BSA adsorption and cell growth also showed that the surface of SMA-based PVDF membrane has excellent biocompatibility.
机译:本文中我们报道了在超临界二氧化碳(SC CO2)中,马来酸酐(Man)/苯乙烯(St)与马来酸酐(Man)/苯乙烯(St)发生热诱导的接枝共聚反应,从而对聚偏二氟乙烯(PVDF)微孔膜进行了表面改性。 FT-IR / ATR和XPS光谱以及SEM照片可以证实,载体和载体剂可以加速单体在聚合物基体内的传质,从而促进膜表面和膜孔内的接枝共聚。研究了接枝共聚反应的SC CO2压力,温度和单体浓度。制备了含量为0〜7 wt%的接枝St-Man共聚物(SMA)的改性PVDF膜,并对其表面微观结构,组成,亲水性进行了分析。固态13C CP / MAS NMR和DSC表明PVDF膜上的SMA接枝物具有交替的序列结构,并在Mo中形成了不同的相。膜的接枝SMA的T_g为122.8°C,而PVDF基质的T_m为161.2°C。静态接触角测量结果表明,接枝SMA可获得显着且持久的亲水性.BSA吸附和细胞实验生长还表明基于SMA的PVDF膜的表面具有优异的生物相容性。

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