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Preparation and characterization of UV-sensitive chitosan for UV-cure with poly(ethylene glycol) dimethacrylate

机译:聚乙二醇二甲基丙烯酸酯用于紫外光固化的紫外敏感壳聚糖的制备与表征

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摘要

In this study, gel membranes of chitosan-g-poly(ethylene glycol) dimethacrylate (CS-g-PEGDMA) with pH sensitive properties were synthesized without employing any photo-initiator and crosslinker. First, CS was endowed with UV-sensitive property by reaction with cinnamoyl chloride in methanesulfonic acid. The reaction mainly occurred on the hydroxyl groups of the pyranose unit, while most C-2 amino groups were protected. The substitution degree of cinnamoyl group was 0.98, while the protection efficiency of -NH _2 was about 80 %. Upon UV-irradiation, initial free radicals were produced only along the cinnamoyl-modified CS chains, which induced the grafting of PEGDMA from the chitosan chains and eventually the crosslinking. Increasing the feeding amount of PEGDMA increased the grafting ratio as well as the crosslinking density. The T _g value decreased from 161 °C for the pure chitosan to about 90 °C for the CS-g-PEGDMA with a grafting ratio of 1.29. Two stages of degradation correspondent to the individual degradation of CS chains and the PEGDMA chains were observed for all CS-g-PEGDMA copolymers, demonstrating their nature of graft copolymers. The tensile mechanical properties of the CS-g-PEGDMA membranes were affected by the two opposing factors: inter-connected soft PEGDMA chains and crosslinking density; and the optimum properties were achieved when the grafting ratio was increased to about 0.80. By combining CS and PEGDMA components, these copolymer membranes thus have the potential to be used as biomedical membranes.
机译:在这项研究中,无需使用任何光引发剂和交联剂,就可以合成具有pH敏感特性的壳聚糖-g-聚二甲基丙烯酸乙二醇酯(CS-g-PEGDMA)凝胶膜。首先,通过与肉桂酰氯在甲磺酸中反应,使CS具有UV敏感性。该反应主要发生在吡喃糖单元的羟基上,而大多数C-2氨基被保护。肉桂酰基的取代度为0.98,-NH _2的保护效率约为80%。在紫外线照射下,仅沿肉桂酰基修饰的CS链产生初始自由基,这导致PEGDMA从壳聚糖链接枝并最终引起交联。 PEGDMA的进料量的增加增加了接枝率以及交联密度。 T _g值从纯壳聚糖的161°C降低到CS-g-PEGDMA的90°C,接枝率为1.29。对于所有CS-g-PEGDMA共聚物,观察到两个降解阶段,分别对应于CS链和PEGDMA链的单独降解,这表明了它们的接枝共聚物性质。 CS-g-PEGDMA膜的拉伸机械性能受到两个相反因素的影响:相互连接的软PEGDMA链和交联密度;以及当接枝率提高到约0.80时,可获得最佳性能。通过结合CS和PEGDMA组分,这些共聚物膜因此具有用作生物医学膜的潜力。

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