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Surface functionalization of plasticized chitosan films through PNIPAM grafting via UV and plasma graft polymerization

机译:通过UV和等离子体移植聚合通过肺蛋白嫁接塑化的壳聚糖膜的表面官能化

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摘要

Chitosan films were formulated and subsequently given thermosensitive properties by modifying the surfaces. The first step involved the incorporation of poly(ethylene glycol) (PEG) plasticizers at various ratios into the chitosan blends. Tensile tests showed that the molecular weight of the PEG impacted the mechanical properties, while the plasticizing effect was optimal for a PEG content of 20%. The addition of glycerol, in combination with PEG, increased the elongation at break without altering the tensile strength. In order to add thermosensitive properties to the chitosan films, poly(N-isopropylacrylamide) (PNIPAM) was graft polymerized on the surface via two methods: UV irradiation or plasma treatment. The surface modification was evaluated in terms of surface characteristics (XPS, SEM, contact angle) and bulk swelling abilities, with a specific focus on the thermosensitive nature due to the lower critical solution temperature (LCST) transition of the PNIPAM. The two grafting methods implied differences in terms of thermal responsiveness. Indeed, due to the presence of particles on their surfaces, UV grafted samples exhibited higher hydrophilicity and thermosensitivity, whereas their lower content of PNIPAM involved lower swelling thermal dependence. All of these results support the interest in PNIPAM grafted chitosan surfaces for the development of smart biomaterials.
机译:通过改变表面配制壳聚糖膜并随后通过改变热敏性能。第一步涉及在各种比率中加入聚(乙二醇)(PEG)增塑剂进入壳聚糖共混物。拉伸试验表明,PEG的分子量撞击机械性能,而塑化效果对于PEG含量为20%。加入甘油,与PEG的组合,在不改变拉伸强度的情况下在断裂时增加伸长率。为了向壳聚糖膜添加热敏性质,通过两种方法将聚(N-异丙基丙烯酰胺)(PNIPAM)(PNIPAM)聚合在表面上的接枝:UV辐射或等离子体处理。在表面特性(XPS,SEM,接触角)和散装溶胀能力方面评估表面改性,其由于泊普的临界溶液温度(LCST)过渡而具有特定于热敏性的热敏性。两种接枝方法暗示了热响应性方面的差异。实际上,由于它们的表面上存在颗粒,UV接枝样品具有更高的亲水性和热敏感性,而它们较低的肺脂含量涉及较低的膨胀热依赖性。所有这些结果都支持普氏蛋白接枝的壳聚糖表面以发展智能生物材料的兴趣。

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  • 来源
    《European Polymer Journal》 |2018年第2018期|共8页
  • 作者单位

    Université de Toulouse CIRIMAT UPS-INPT-CNRS Faculté de Pharmacie;

    Université de Toulouse CIRIMAT UPS-INPT-CNRS Faculté de Pharmacie;

    Research Unit Plasma Technology (RUPT) Department of Applied Physics Faculty of Engineering &

    Architecture Ghent University;

    Université de Toulouse CIRIMAT UPS-INPT-CNRS Faculté de Pharmacie;

    Research Unit Plasma Technology (RUPT) Department of Applied Physics Faculty of Engineering &

    Architecture Ghent University;

    Université de Toulouse CIRIMAT UPS-INPT-CNRS Faculté de Pharmacie;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

    Chitosan; Plasticizing; UV; Plasma; PNIPAM; Smart-material;

    机译:壳聚糖;塑化;紫外线;等离子体;普氏素;智能材料;

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