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首页> 外文期刊>Holzforschung >Functionalisation of poly(ethylene terephthalate) (PET) surfaces with two cationised xylans by means of two anchoring polymers
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Functionalisation of poly(ethylene terephthalate) (PET) surfaces with two cationised xylans by means of two anchoring polymers

机译:用两个锚定聚合物用两个阳离子Xylans的聚(乙烯对苯二甲酸乙二醇酯)(PET)表面的官能化

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The main aim of this investigation was to study the interaction of cationised xylans as antimicrobial substances with poly(ethylene terephthalate) (PET) model films, prepared by spin coating. A quartz crystal microbalance (QCM-D) with dissipation monitoring was applied as a nanogram sensitive balance to detect the amount of adsorbed cationised xylans. The xylan adsorption onto PET model films was studied as a function of pH and ionic strength. To improve the adsorption, positively charged polyethylenimid (PEI) and negatively charged polyvinylsulfonic acid (PVSA), as sodium salt, were applied as anchoring polymers. Surface free energies and hydrophilic/hydrophobic properties of surfaces were monitored by goniometry. Cationised xylans favourably deposited at pH 5, where beside electrostatic, physical interactions are possible, and adsorption may be driven by entropy gain. Higher ionic strengths of solutions also improved adsorption, due to the lower water solubilities of xylans. When intermediate layers of chosen anchoring polymers were applied on the PET surfaces, the binding of xylans as well as their coating durability were improved. Surface modifications presented in this work, provided important information regarding the adsorption/desorption phenomena between antimicrobial cationised xylans and synthetic PET surfaces. The latter is of great interest, when composing hydrophilic and antimicrobial PET surfaces for medical applications.
机译:本调查的主要目的是研究阳离子Xylans作为具有聚(乙二醇酯)(PET)模型薄膜的抗微生物物质的相互作用,由旋涂制备。将具有耗散监测的石英晶体微稳定(QCM-D)作为纳米敏感平衡施用,以检测吸附的阳离子化的Xylans的量。作为pH和离子强度的函数研究了Xylan吸附到PET模型膜上。为了改善吸附,带正电荷的聚乙烯酰胺(PEI)和带负电的聚乙烯醇磺酸(PVSA)作为钠盐施加为锚定聚合物。通过焦管测定法监测表面的表面自由能和亲水/疏水性质。阳离子化的Xylans有利地沉积在pH5,其中可以在静电,物理相互作用旁边进行,并且吸附可以通过熵增益驱动。由于Xylans的水溶性较低,溶液的较高离子强度也提高了吸附。当在PET表面上施加所选择的锚定聚合物的中间层时,改善了Xylans的结合以及它们的涂层耐久性。在这项工作中提出的表面修改,提供了有关抗菌阳离子典型的Xylans和合成PET表面之间的吸附/解吸现象的重要信息。在为医疗应用组成亲水和抗微生物PET表面时,后者具有很大的兴趣。

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