University Institute of Chemical Technology, North Maharashtra University, Jalgaon Maharashtra, 425001, India.
University Institute of Chemical Technology, North Maharashtra University, Jalgaon Maharashtra, 425001, India.
Carbohydr Polym. 2017 Aug 1;169:426-432. doi: 10.1016/j.carbpol.2017.04.023. Epub 2017 Apr 20.
Nanowires of calcium silicate were successfully synthesized by ultrasonic irradiation process and incorporated into chitosan and hydroxyetheyl methacrylate (HEMA) copolymer matrix by solution blending for efficacious preparation of biodegradable nanocomposites. Remarkable improvement in mechanical properties of the nanocomposites was noticed after micro-tensile analysis. Enlarged surface area and higher aspect ratio of CaSiO nanowires were the key factors responsible for such improvement. This was supported by EDS and XRD analysis in terms of proper distribution of nanofiller through the copolymer matrix and corresponding rise in percentage crystallanity respectively. Contact angle and biodegradation studies further clarified that nano-CaSiO did not affect the hydrophilicity and general degradation route of chitosan copolymer respectively. This renders the nano-CaSiO as an ideal substitute for preparing high performance nanocomposites to be applicable for biomedical applications.
通过超声辐射法成功合成了硅酸钙纳米线,并通过溶液共混将其掺入壳聚糖和羟乙基甲基丙烯酸酯(HEMA)共聚物基质中,有效地制备了可生物降解的纳米复合材料。经过微拉伸分析后,发现纳米复合材料的机械性能有了显著提高。纳米线的增大的表面积和更高的纵横比是导致这种提高的关键因素。EDS 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对此进行了支持。接触角和生物降解研究进一步表明,纳米 CaSiO 对壳聚糖共聚物的亲水性和一般降解途径没有影响。这使得纳米 CaSiO 成为制备适用于生物医学应用的高性能纳米复合材料的理想替代品。