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Improving Surface Hydrophilic Characteristics of Polymer by Plasma Inducing Graft Polymerization

机译:等离子体诱导接枝聚合反应改善聚合物的表面亲水性

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A plasma-induced device is fabricated and used to process the inertia polypropylene which is of simple structure and easy analyzing. The effects of the technology parameters of plasma-treatment on the surface properties of polypropylene are investigated and then the plasma-induced polymerization is applied to the medicine biomaterials of Poly(DL-lactic acid-co-glycolic acid)(PGLA). PP film is grafted acrylic acid by plasma. It has been proved that the surface of the film lives carboxyl by FTIR. The concentration of carboxyl has been measured through the dyeing method. Besides, the surface contact angle about the dealt film is measured. It is concluded that the polymerization by plasma can obviously improve the hydrophilic properties of the PP film surface. Through controlling the degree of the grafting of the film surface by choosing the technology parameters of plasma-treatment, the films of different contact angle with H_2O are obtained. The experiment also shows the surface hydrophilic nature of the PGLA is improved.
机译:制作了等离子体感应装置,用于处理结构简单,易于分析的惯性聚丙烯。研究了等离子体处理工艺参数对聚丙烯表面性能的影响,然后将等离子体诱导的聚合反应应用于聚DL-乳酸-乙醇酸共聚物(PGLA)的药物生物材料中。 PP膜是通过等离子接枝丙烯酸。通过FTIR证明膜的表面具有羧基。羧基的浓度已经通过染色方法测量。此外,测量围绕处理过的膜的表面接触角。结论是,通过等离子体聚合可以明显改善PP膜表面的亲水性。通过选择等离子处理工艺参数控制薄膜表面的接枝程度,得到了与H_2O接触角不同的薄膜。实验还表明,PGLA的表面亲水性得到了改善。

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