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首页> 外文期刊>Acta biomaterialia >High-efficiency preparation of poly(2-methacryloyloxyethyl phosphorylcholine) grafting layer on poly(ether ether ketone) by photoinduced and self-initiated graft polymerization in an aqueous solution in the presence of inorganic salt additives
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High-efficiency preparation of poly(2-methacryloyloxyethyl phosphorylcholine) grafting layer on poly(ether ether ketone) by photoinduced and self-initiated graft polymerization in an aqueous solution in the presence of inorganic salt additives

机译:在无机盐添加剂存在下,在水溶液中通过光诱导和自引发接枝聚合高效制备聚醚醚酮上的聚2-甲基丙烯酰氧基氧基乙基磷酸胆碱接枝层

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摘要

A highly efficient methodology for preparing a poly(2-methacryloyloxyethyl phosphorylcholine) (PMPC) layer on the surface of poly(ether ether ketone) (PEEK) was examined by photoinduced and self-initiated graft polymerization. To enhance the polymerization rate, we demonstrated the effects of inorganic salt additives in the feed monomer solution on thickness of grafted PMPC layer. Photoinduced polymerization occurred and the PMPC graft layer was successfully formed on the PEEK surface, regardless of inorganic salt additives. Moreover, it was clearly observed that the addition of inorganic salt enhanced the grafting thickness of PMPC layer on the surface even when the photoirradiation time was shortened. The addition of inorganic salt additives in the feed monomer solution enhanced the polymerization rate of MPC and resulted in thicker PMPC layers. In particular, we evaluated the effect of NaCl concentration and how this affected the polymerization rate and layer thickness. We considered that this phenomenon was due to the hydration of ions in the feed monomer solution and subsequent apparent increase in the MPC concentration. A PMPC layer with over 100-nm-thick, which was prepared by 5-min photoirradiation in 2.5 mol/L inorganic salt aqueous solution, showed good wettability and protein adsorption resistance compared to that of untreated PEEK. Hence, we concluded that the addition of NaCl into the MPC feed solution would be a convenient and efficient method for preparing a graft layer on PEEK.
机译:通过光诱导和自引发的接枝聚合反应,研究了一种在聚醚醚酮(PEEK)表面制备聚(2-甲基丙烯酰氧基氧乙基磷酸胆碱)(PMPC)层的高效方法。为了提高聚合速率,我们证明了进料单体溶液中无机盐添加剂对接枝PMPC层厚度的影响。无论无机盐添加剂如何,都发生了光诱导的聚合反应,并且在PEEK表面成功地形成了PMPC接枝层。此外,清楚地观察到,即使缩短了光照射时间,无机盐的添加也增加了表面上PMPC层的接枝厚度。在进料单体溶液中添加无机盐添加剂可提高MPC的聚合速率,并导致PMPC层更厚。特别是,我们评估了NaCl浓度的影响以及这如何影响聚合速率和层厚度。我们认为这种现象是由于进料单体溶液中离子的水合以及随后MPC浓度的明显增加所致。与未经处理的PEEK相比,通过在2.5 mol / L无机盐水溶液中进行5分钟的光照射制备的厚度超过100 nm的PMPC层具有良好的润湿性和抗蛋白质吸附性。因此,我们得出结论,向MPC进料溶液中添加NaCl将是在PEEK上制备接枝层的便捷有效方法。

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