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Modification of Polydactic acid)Films:Enhanced Wettability from Surface-Confined Photografting and Increased Degradation Rate Due to an Artifact of the Photografting Process

机译:聚乳酸膜的改性:增强了表面受限光接枝的润湿性,并由于光接枝过程的伪影而提高了降解速率

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摘要

The major objective of this research was to modify PLA film surfaces with the ultimate aim of making a bioactive surface that will show faster degradation.The PLA film was solvent-cast,and the film surfaces were grafted with poly(acrylic acid)(PAA)and poly(acrylamide)(PAAm)using a UV-induced photopolymerization process.The film surface resulting from each reaction step was analyzed using ATR-FTIR spectroscopy and contact angle measurements.Results showed that PAA was grafted from PLA film surfaces in 2 or 3 h,while PAAm was grafted in 3 or 5 h depending on the method of activation.Films grafted with PAA and PAAm exhibited improved wettability.The neat and surface-modified films were incubated in different pH solutions,viz.,pH = 4,7,and 10,for specified time periods.The films resulting from each treatment were analyzed using atomic force microscopy(AFM).The molecular weights of the incubated films were measured using chloroform-based GPC.Results established that faster degradation of the PLA film when incubated in different pH solutions was achieved for PLA-g-PAA films;however,control studies revealed that the major contribution to the observed degradation was due to the entangled PAA chains resulting from acrylic acid monomer that migrated into the film bulk and not due to the surface-grafted layers.
机译:这项研究的主要目的是修饰PLA膜表面,最终目的是使生物活性表面表现出更快的降解.PLA膜是溶剂浇铸的,膜表面接有聚丙烯酸(PAA)接枝使用ATR-FTIR光谱和接触角测量分析了每个反应步骤产生的膜表面,结果表明PAA是在2或3个表面上从PLA膜表面接枝的h,而PAAm则在3或5 h内接枝,具体取决于活化方法.PAA和PAAm接枝的膜表现出改善的润湿性。将纯净和表面改性的膜在不同的pH溶液中孵育,即pH = 4,7分别在指定的时间段和10个时间内使用原子力显微镜(AFM)对每次处理产生的膜进行分析。使用氯仿基GPC测定孵育膜的分子量。 PLA-g-PAA膜在不同pH溶液中孵育时可形成PLA膜;然而,对照研究表明,对观察到的降解的主要贡献是由于丙烯酸单体迁移到膜主体中导致PAA链缠结而不是由于表面嫁接的层。

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