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Thermal and catalytic formation of radicals during autoxidation

机译:自氧化过程中自由基的热催化形成

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The aerobic autoxidation of hydrocarbons proceeds through a complicated reaction mechanism, mediated by free radicals. Most reported autoxidation catalysts enhance the radical formation rate via homolytic activation of hydroperoxide products. Whereas our knowledge of the product formation mechanisms has significantly improved over the last couple of years, the chain-initiation is still poorly understood. In this contribution, the thermal and catalytic initiation rate for the oxidation of the renewable olefin α-pinene is quantified, thereby providing evidence for a substrate-assisted thermal initiation. The kinetics of the catalytic initiation is in good agreement with previous studies under model conditions.
机译:碳氢化合物的好氧自氧化反应是通过自由基介导的复杂反应机理进行的。大多数报道的自氧化催化剂通过氢过氧化物产物的均相活化来提高自由基的形成速率。尽管在过去的几年中,我们对产品形成机理的知识有了很大的提高,但对链起始的了解仍然很少。在此贡献中,可再生烯烃α-pine烯氧化的热和催化引发速率被定量,从而为底物辅助的热引发提供了证据。在模型条件下,催化引发的动力学与先前的研究非常吻合。

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