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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Study on the degradation behavior and mechanism of Poly(lactic acid) modification by ferric chloride
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Study on the degradation behavior and mechanism of Poly(lactic acid) modification by ferric chloride

机译:氯化铁(乳酸)改性聚(乳酸)改性的降解行为及机理研究

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摘要

A kind of poly(lactic acid) (PLA) material with rapid degradation capacity was prepared with ferric chloride (FeCl3), it's degradation rate was more than 10 times higher than that of pure PLA. FeCl3 forms stable chemical bonds with C and O, which weakens the ester bond and leads to rapid degradation of PLA immensely. The degradation process of modified PLA is greatly accelerated because the presence of Fe3+ facilitates the first step of the degradation process. The thermal stability of the modified materials decreased greatly, and the PLA changed from a higher crystalline polymer to an almost non-crystalline polymer with increasing FeCl3 content, which enhanced the degradation rate due to the reduced intermolecular force. In terms of the degradation performance, the modified materials containing 2.95 phr FeCl3 possessed the best comprehensive performance.
机译:用氯化铁(FECL3)制备一种具有快速降解能力的聚(乳酸)(PLA)材料,其降解速率比纯PLA高出10倍。 FECL3与C和O形成稳定的化学键,其削弱酯键并导致PLA的快速降解。 改性PLA的降解过程大大加速,因为Fe3 +的存在有助于降解过程的第一步。 改性材料的热稳定性大大降低,PLA从更高的结晶聚合物改变为几乎非结晶聚合物,随着FECL3含量的增加,增强了由于分子间的降低而导致的降解速率。 就劣化性能而言,含有2.95phr feCl3的改性材料具有最佳的综合性能。

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