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Mechanism of the temperature-dependent degradation of polyamide 66 films exposed to water

机译:暴露在水中的聚酰胺66薄膜的温度依赖性降解机理

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Experiments were performed to elucidate the degradation mechanism of hot-pressed polyamide 66 upon exposure to water. For films exposed to water over the temperature range 25 ℃-90 ℃, degradation was monitored using FTIR and solid-state ~(13)C NMR spectroscopies. The data arc consistent with a mechanism in which (1) a radical is formed on the methylene carbon adjacent to the amide nitrogen, (2) this radical reacts with oxygen to form a hydroperoxide, and (3) the hydroperoxide decomposes to form an imide or a hydroxylated amide, both of which may cleave leading to chain scission. Water appears to facilitate degradation by increasing the flexibility of the polymer matrix through swelling rather than acting as a reactive species, at least at the early stages of the process. An apparent activation energy of 15 ± 2 kJ/mol is observed for the early stages of degradation, suggesting that segmental motions in the polymer associated with water and oxygen sorption or inter-chain radical reactions are indeed key components of the degradation process.
机译:进行实验以阐明热压聚酰胺66在暴露于水时的降解机理。对于在25℃-90℃的温度下暴露于水的薄膜,使用FTIR和固态〜(13)C NMR光谱仪监测降解。数据与以下机理一致:(1)在酰胺氮附近的亚甲基碳上形成一个自由基,(2)该自由基与氧反应形成氢过氧化物,(3)氢过氧化物分解形成酰亚胺或羟基酰胺,两者都可能裂解导致断链。至少在工艺的早期阶段,水似乎通过溶胀而不是作为反应性物质,通过增加聚合物基质的柔韧性来促进降解。在降解的早期阶段观察到的表观活化能为15±2 kJ / mol,这表明与水和氧的吸附或链间自由基反应相关的聚合物中的分段运动确实是降解过程的关键组成部分。

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