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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Vapor-based grafting of crosslinked poly(N-vinyl pyrrolidone) coatings with tuned hydrophilicity and anti-biofouling properties
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Vapor-based grafting of crosslinked poly(N-vinyl pyrrolidone) coatings with tuned hydrophilicity and anti-biofouling properties

机译:基于蒸汽的接枝交联的聚(N-乙烯基吡咯烷酮)涂料,具有可调的亲水性和抗生物结垢特性

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Anti-biofouling poly(N-vinyl pyrrolidone) (PVP) coatings with tailored crosslinking degrees were synthesized and grafted onto planar and microporous substrates via a one-step vapor-based approach. N-Vinyl pyrrolidone was copolymerized with ethylene glycol diacrylate at different ratios in the vapor phase, resulting in conformal PVP coatings with a wide spectrum of crosslinking degrees. The synthesized coatings were immobilized onto substrates either through covalent bonding with pretreated surfaces, or by first generating a highly crosslinked polymer prime layer on untreated surfaces, followed by in situ grafting from the reactive sites of the prime coating. The surface hydrophilicity of the resultant coatings along with their protein and bacteria repellency increased monotonically with the decrease of the crosslinking degree. Coatings on planar surfaces with the lowest crosslinking degree showed a water contact angle of 33 +/- 1 degrees, comparable to the reported PVP-grafted surfaces, while coatings on microporous membranes exhibited "superwettability'' with water contact angles close to 0 degrees. The least crosslinked coatings also adsorbed 92% less bovine serum albumin compared to the control, and readily prevented the attachment of Escherichia coli cells. The grafted coatings are robust against continuous washing and ultrasonication. We expect this vapor-based grafting technique to provide a practical means for imparting surface hydrophilicity and anti-biofouling properties to substrates regardless of their surface chemistry or geometry.
机译:合成具有定制交联度的防污垢聚(N-乙烯基吡咯烷酮)(PVP)涂料,并通过一步法基于蒸汽的方法将其接枝到平面和微孔基材上。 N-乙烯基吡咯烷酮与乙二醇二丙烯酸酯在气相中以不同比例共聚,得到具有宽交联度谱的保形PVP涂层。通过与预处理的表面共价键合或通过首先在未处理的表面上生成高度交联的聚合物底涂层,然后从底涂层的反应位点进行原位接枝,将合成的涂层固定在基材上。随着交联度的降低,所得涂层的表面亲水性以及它们的蛋白质和细菌排斥性单调增加。具有最低交联度的平面表面上的涂层显示出33 +/- 1度的水接触角,与报道的PVP接枝表​​面相当,而微孔膜上的涂层则具有“超湿润性”,水接触角接近0度。与对照相比,最少交联的涂层吸附的牛血清白蛋白也要少92%,并且很容易防止大肠杆菌细胞的附着,因此,这种涂层的涂层对连续洗涤和超声处理具有很强的抵抗力,我们希望这种基于蒸汽的移植技术能够提供实用的解决方案赋予底物表面亲水性和抗生物结垢特性的手段,无论其表面化学性质或几何形状如何。

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