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Effect of the content and distribution of ultraviolet absorbing groups on the UV protection and degradation of polylactide films

机译:紫外线吸收基团的含量和分布对聚丙交酯膜的紫外线防护和降解的影响

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摘要

Introduction of a UV absorbing group onto a polymer chain through covalent bonding greatly reduced the UV light transmittance of the resulting polylactide (PLA) film and preserved the high transparency to visible light. Compared to simply blending a UV absorber with a PLA matrix, covalent bonding of the UV absorbing group with polylactide enabled the prepared films to have better dispersion of the UV absorbing group, stable solvent resistance, better protection effect against UV damage and a slower rate of UV irradiated degradation, while the distribution of the UV absorbing group made no difference to the aforementioned properties. The degradation of both the PLA film covalently bonded with a UV absorbing group and the PLA/UV-absorber blended film followed the same mechanism as pure PLA films, in that the alkyl-oxygen bond broke first to produce acyl-oxygen and secondary carbon radicals, which then captured hydrogen to form carboxyl groups and alkyl groups at the end of the fractured polymer chain. More UV absorbing groups at the chain end were favorable for reducing UV transmittance, providing a better protection effect on the packaged probe, and slowing the UV irradiated degradation of PLA film. The thermal stability was dependent on the molecular weight of polylactide and was hardly affected by the introduction of the UV absorber or UV absorbing group.
机译:通过共价键将紫外线吸收基团引入到聚合物链上,大大降低了所得聚丙交酯(PLA)膜的紫外线透射率,并保持了对可见光的高透明度。与简单地将紫外线吸收剂与PLA基质掺混相比,紫外线吸收基团与聚丙交酯的共价键合使制得的薄膜具有更好的紫外线吸收基团分散性,稳定的耐溶剂性,更好的抗紫外线损伤保护作用和较低的紫外线吸收率。紫外线辐射降解,而紫外线吸收基团的分布对上述性能没有影响。共价键结合有紫外线吸收基的PLA膜和PLA / UV吸收剂共混膜的降解均遵循与纯PLA膜相同的机理,即烷基-氧键先断裂产生酰基-氧和仲碳自由基然后捕获氢,在断裂的聚合物链末端形成羧基和烷基。链末端有更多的紫外线吸收基团有利于降低紫外线的透射率,对包装好的探头提供更好的保护效果,并减缓紫外线辐射对PLA薄膜的降解。热稳定性取决于聚丙交酯的分子量,并且几乎不受引入紫外线吸收剂或紫外线吸收基团的影响。

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