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首页> 外文期刊>Polimeros,Ciencia e Tecnologia >Tratamento da superf?-cie de cateteres de poliamida 11 por plasma de oxig?anio
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Tratamento da superf?-cie de cateteres de poliamida 11 por plasma de oxig?anio

机译:氧等离子体对聚酰胺11导管进行表面处理

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Polyamide 11, as well as the great majority of polymers used in the construction of minimally invasive devices for medical use, shows no significant interaction with polar liquids, which limits its use in some applications, since most of internal biological tissues have hydrophilic character (high affinity for water). In this study, an investigation was made of the influence of oxygen plasma treatment of polyamide 11 surface on the composition, roughness and hydrophilicity. Through the plasma treatment, the polymer characteristics were changed to promote adhesion of a hydrophilic polymer layer on its surface, increasing the hydrophilicity and, consequently, the biocompatility of the polymeric device. Polyamide 11 catheters were submitted to different times of exposure to plasma, generated in an oxygen atmosphere with pressure, temperature and constant voltage. The treated and untreated (control) samples were then characterized using infrared spectroscopy, scanning electron microscope and contact angle measurements with water. Both the roughness and contact angle increased with the plasma treatment, indicating a possible improvement of the adherence of the hydrophilic layer coating the polymer.
机译:聚酰胺11以及用于构建医疗用微创设备的绝大多数聚合物,与极性液体之间没有显着的相互作用,这限制了其在某些应用中的使用,因为大多数内部生物组织都具有亲水性(高对水的亲和力)。在该研究中,进行了氧等离子体处理聚酰胺11表面对组成,粗糙度和亲水性的影响的研究。通过等离子体处理,改变了聚合物的特性以促进亲水性聚合物层在其表面上的粘附,从而增加了亲水性,从而提高了聚合物装置的生物相容性。聚酰胺11导管在氧气,压力,温度和恒定电压下产生的血浆中暴露的时间不同。然后使用红外光谱,扫描电子显微镜和与水的接触角测量对已处理和未处理(对照)样品进行表征。粗糙度和接触角都随等离子处理而增加,表明涂覆聚合物的亲水层的粘附性可能得到改善。

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