首页> 外文期刊>Journal of Macromolecular Science. Physics >Influence of C-60 fullerene on the oxidative degradation of a free radical poly(methyl methacrylate)
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Influence of C-60 fullerene on the oxidative degradation of a free radical poly(methyl methacrylate)

机译:C-60富勒烯对自由基聚甲基丙烯酸甲酯氧化降解的影响

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摘要

The results of studies of thermal and oxidative degradation of a free-radical poly(methyl methacrylate) (PMMA) and the influence of a fullerene C-60 on these processes are considered. The best characteristic of the change of the thermal stability is the temperature shift of the entire thermal gravimetric (TG) curve (or the middle part of it), but not the shift of onset or the starting temperature of the mass loss. During oxidative degradation in air of PMMA, three processes occur practically simultaneously: thermal degradation, or scission of chains; oxidation, or insertion of oxygen atoms in the polymer chains and in products of the degradation; and a sublimation of degradation products. The competition between exothermic and endothermic processes results in sharp changes in the balance of heat energy in the system and the sign of the total heat effect. In accord with these changes all of the process of PMMA oxidative degradation can conditionally be divided into three stages. The introducing of small quantities of C-60 in a system results in replacement of oxygen by a fullerene or to a partial avoidance of oxidation, as a result of which, at the first stage, a smaller quantity of degradation products is formed and oxidized. There is a "transfer" of degradation products and heat generation from the first, lowest temperature stage, to the third, highest one. Simultaneous application of DSC and TG techniques has shown that during oxidative degradation of PMMA, especially in the presence of a fullerene, there is a latent degradation manifested in exothermal effects on DSC curves without mass losses on the TG curves. The introducing of C-60 results in narrowing of the peaks (by similar to1.5 times) on DTG and MTA curves that may be explained by the narrowing of a set of possible degradation reactions. The C-60 molecules are divided during oxidative degradation of PMMA into two groups: linked (similar to20%) and nonlinked with macroradicals of PMMA. The nonlinked molecules of C-60, in turn, are subdivided into oxidized and volatilizing without oxidation and degradation. The inhibiting effect of C-60 on the thermal oxidative degradation reduces basically to two processes: to formation of fullerene-containing chains of PMMA and to nonchain inhibition. The matrix of PMMA also has a significant influence on the thermal behavior of C-60. [References: 24]
机译:考虑了自由基聚甲基丙烯酸甲酯(PMMA)的热降解和氧化降解以及富勒烯C-60对这些工艺的影响的研究结果。热稳定性变化的最佳特征是整个热重(TG)曲线(或其中间部分)的温度变化,而不是质量损失的起始温度或起始温度的变化。在PMMA空气中的氧化降解过程中,实际上同时发生了三个过程:热降解或链断裂。氧化,或氧原子插入聚合物链和降解产物中;和降解产物的升华。放热过程与吸热过程之间的竞争导致系统中热能平衡的急剧变化以及总热效应的迹象。根据这些变化,PMMA氧化降解的所有过程都可以有条件地分为三个阶段。在系统中引入少量的C-60会导致富勒烯替代氧气或避免部分氧化,其结果是,在第一阶段,形成并氧化了较少量的降解产物。降解产物和热量的“转移”是从第一个最低温度阶段到第三个最高温度阶段。 DSC和TG技术的同时应用表明,在PMMA的氧化降解过程中,特别是在富勒烯存在的情况下,在DSC曲线的放热效应中表现出潜在的降解,而TG曲线没有质量损失。 C-60的引入导致DTG和MTA曲线上的峰变窄(约1.5倍),这可能是由于一组可能的降解反应变窄所致。在PMMA的氧化降解过程中,C-60分子分为两组:连接的(约20%)和未连接的PMMA自由基。 C-60的未连接分子又细分为氧化和挥发,而没有氧化和降解。 C-60对热氧化降解的抑制作用基本上减少到两个过程:形成PMMA的含富勒烯链和非链抑制。 PMMA的基质对C-60的热性能也有重要影响。 [参考:24]

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