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Development of chitosan and sodium alginate composite coating on 316l stainless steel by electrochemical method

机译:电化学法在316l不锈钢上制备壳聚糖和海藻酸钠复合涂层

摘要

Stainless steel has been used as material for orthopedic and orthodontic implants due to their low cost, good formability and proper mechanical properties. However, stainless steel is susceptible to pitting corrosion in body fluids and have poor wear resistance which limits its applications. Surface coating with certain ceramic and polymer composites are done to improve the biocompatibility of stainless steel. Chitosan is the cationic regular biopolymer having a unique structure, multidimensional properties, highly sophisticated function and extensive variety of requisition in biomedical field. Chitosan is a promising biomaterial for medical implants due to its biocompatibility, biodegradability and nontoxic property alongside its antimicrobial action and low immunogenicity. A chitosan and chitosan-sodium alginate composite layer has been electrophoreticaly deposited on 316L stainless steel. The solution comprises of distilled water and acetic acid. The deposition of chitosan and sodium alginate was carried out for 5, 10, 15 and 20 min at constant power supply of 20V on the cathode. The morphological analysis using optical microscopy, phase purity analysis using X-ray diffraction (XRD), molecular structure analysis using Fourier transform infrared spectroscopy (FTIR) and wettability by sessile drop method was done to characterize the samples. FTIR indicated the existence of bond between protonated carboxylate bonds and partially protonated amine group which will enhance the protein adhesion on the coated surface.
机译:由于其低成本,良好的可成形性和适当的机械性能,不锈钢已被用作骨科和正畸植入物的材料。然而,不锈钢易于在体液中发生点蚀,并且具有差的耐磨性,这限制了其应用。用某些陶瓷和聚合物复合材料进行表面涂层可提高不锈钢的生物相容性。壳聚糖是阳离子常规生物聚合物,具有独特的结构,多维特性,高度复杂的功能以及在生物医学领域的广泛需求。壳聚糖由于具有生物相容性,生物降解性和无毒特性,同时具有抗菌作用和低免疫原性,因此是用于医疗植入物的有前途的生物材料。壳聚糖和壳聚糖-海藻酸钠复合层已电泳沉积在316L不锈钢上。该溶液包含蒸馏水和乙酸。壳聚糖和藻酸钠的沉积在阴极上以20V恒定电源进行5、10、15和20分钟。使用光学显微镜进行形态分析,使用X射线衍射(XRD)进行相纯度分析,使用傅立叶变换红外光谱(FTIR)进行分子结构分析以及通过无滴法进行润湿性来表征样品。 FTIR表明质子化的羧酸酯键与部分质子化的胺基之间存在键,这将增强蛋白质在包被的表面上的粘附。

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    Prakash Chandra;

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  • 年度 2014
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