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Plasma Surface Modification of Medical Poly Vinyl Chloride for Improvement of Surface Antibacterial Properties

机译:医用聚氯乙烯的等离子体表面改性,以改善表面抗菌性能

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Summary form only given. There is an increasing interest on the development of antibacterial medical polymers in the biomedical industry. Most of antibacterial polymers are made by addition of antibacterial materials generally containing Ag+, but inside humans, these antibacterial polymers may pose health hazards and so alternative polymeric materials must be developed. In this work, plasma immersion ion implantation (PIII) is used to modify the surface of medical PVC (poly vinyl chloride) by DP-300 to improve its antibacterial performance. The surface is first activated by O2 plasma to produce more hydrophilic groups so that DP-300 can be coated well on the surface. Subsequently, Ar plasma-treatment is conducted under optimal conditions to render its surface antibacterial. The modified surface is characterized by XPS, SEM, ATR-FTIR, AFM and contact angle measurements. The antibacterial performance is tested utilizing the method of plate counting of Micrococcus luteus (gram positive) and Escherichia coli (gram negative). The antibacterial performance with time and antibacterial mechanism of PVC are also discussed. Experimental results show that the plasma-treated surface exhibits good antibacterial performance while the favorable bulk properties of PVC are retained
机译:仅提供摘要表格。在生物医学工业中,对抗菌医学聚合物的开发越来越感兴趣。大多数抗菌聚合物是通过添加通常含有Ag +的抗菌材料制成的,但是在人体内部,这些抗菌聚合物可能会危害健康,因此必须开发其他聚合物材料。在这项工作中,等离子浸入离子注入(PIII)用于通过DP-300修饰医用PVC(聚氯乙烯)的表面,以提高其抗菌性能。该表面首先被O 2 等离子体活化以产生更多的亲水基团,因此DP-300可以很好地涂覆在表面上。随后,在最佳条件下进行Ar等离子处理,以使其表面具有抗菌性。改性的表面通过XPS,SEM,ATR-FTIR,AFM和接触角测量来表征。抗菌性能是使用微球菌(革兰氏阳性)和大肠杆菌(革兰氏阴性)的平板计数方法进行测试的。还讨论了聚氯乙烯的经时抗菌性能和抗菌机理。实验结果表明,经过等离子体处理的表面具有良好的抗菌性能,同时保留了良好的PVC膨松性能。

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