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纳米硫酸钙晶须对壳聚糖-羟乙基甲基丙烯酸酯(HEMA)共聚物纳米复合材料力学性能的影响。

Effect of calcium sulphate nanorods on mechanical properties of chitosan-hydroxyethyl methacrylate (HEMA) copolymer nanocomposites.

机构信息

University Institute of Chemical Technology, North Maharashtra University, Jalgaon 425001 Maharashtra, India.

University Institute of Chemical Technology, North Maharashtra University, Jalgaon 425001 Maharashtra, India.

出版信息

Carbohydr Polym. 2017 Feb 10;157:409-418. doi: 10.1016/j.carbpol.2016.09.083. Epub 2016 Oct 1.

Abstract

Copolymers of chitosan and hydroxyetheyl methacrylate (HEMA) were successfully synthesized using ceric ammonium nitrate (CAN) as an initiator, via in situ polymerization method, followed by efficacious preparation of their nanocomposites by incorporating calcium sulphate nanorods via solution blending process. Hydrophilicity studies confirmed that grafting of HEMA in the backbone of the hydrophobic chitosan chains induced the improvement in hydrophilicity of chitosan, while mechanical properties of the nanocomposites were also enhanced significantly up to 20%, due to availability of enlarged surface area and higher aspect ratio of CaSO nanorods. This was supported by FE-SEM and XRD analysis in terms of proper distribution of nanofiller through the copolymer matrix and corresponding rise in percentage crystallanity respectively. Results obtained from biodegradation studies proved the efficiency of CaSO nanofillers to improve biomechanical strength of chitosan nanocomposites, without affecting their normal degradation profile that renders the products to be applicable for biomedical applications.

摘要

壳聚糖与羟乙基甲基丙烯酸酯(HEMA)的共聚物成功地使用硝酸铈铵(CAN)作为引发剂,通过原位聚合方法合成,随后通过溶液共混工艺掺入硫酸钙纳米棒,有效地制备了它们的纳米复合材料。亲水性研究证实,HEMA 接枝到疏水性壳聚糖链的主链上会提高壳聚糖的亲水性,而纳米复合材料的力学性能也显著提高了 20%,这是由于 CaSO 纳米棒的表面积增大和高长径比所致。FE-SEM 和 XRD 分析分别从纳米填料在共聚物基质中的适当分布和相应的结晶度百分比上升方面支持了这一点。生物降解研究的结果证明了 CaSO 纳米填料在提高壳聚糖纳米复合材料的生物力学强度方面的有效性,而不会影响其正常的降解曲线,从而使这些产品适用于生物医学应用。

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