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Interfacial Properties of Chitosan-PEO Graft Oligomers: Surface Competition with Unmodified Chitosan Oligomers

机译:壳聚糖 - PEO接枝低聚物的界面性质:用未修饰的壳聚糖低聚物表面竞争

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Oligomers of chitosan carrying 45 units long poly(ethylene oxide), PEO, chains grafted to the C-6 position of the sugar units were prepared using a novel synthesis route. The graft density was high, close to one poly(ethylene oxide) chain grafted to each sugar unit of the chitosan oligomer but a small fraction of unreacted chitosan remained in the sample. The molecular weight distribution of the sample was determined using GPC. The interfacial properties of the chitosan-PEO graft oligomers were evaluated using X-ray photo-electron spectroscopy and surface force measurements. It was found that the small fraction of unreacted chitosan was significantly enriched at the solid-solution interface on negatively charged muscovite mica surfaces. The interactions between chitosan-PEO oligomer coated surfaces were found to be dominated by the extended PEO chains, and at high coverage the measured forces were consistent with those expected for polymer brushes. Addition of salt up to 10 mM did not result in any significant desorption of preadsorbed oligomer layers.
机译:使用新颖的合成途径制备携带45个单位的壳聚糖的低聚物,携带45个单位长聚(环氧乙烷),PEO,嫁接到糖单元的C-6位置的链。移植物密度高,接近一个聚(环氧乙烷)链移植到壳聚糖低聚物的每种糖单元中,但在样品中仍然是一小部分未反应的壳聚糖。使用GPC测定样品的分子量分布。使用X射线光电谱和表面力测量评估壳聚糖-PEO接枝寡聚体的界面性质。结果发现,在带负电荷的Muscovite MICA表面上的固溶界面显着富集了未反应的壳聚糖的小部分。发现壳聚糖 - PEO低聚物涂覆表面之间的相互作用被延长的PEO链导地位,并且在高覆盖率下,测量的力与聚合物刷的那些相一致。加入高达10mm的盐不会导致预吸收的低聚物层的任何显着解吸。

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