日本燃焼学会誌
Online ISSN : 2424-1687
Print ISSN : 1347-1864
ISSN-L : 1347-1864
原著論文
量子化学計算によるアルキルベンゼン低温酸化反応機構の検討─芳香環とアルキル側鎖の相互作用の役割─
村上 能規小口 達夫橋本 公太郎
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2011 年 53 巻 165 号 p. 165-171

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Quantum chemical calculations were performed to investigate the mechanism for the low-temperature oxidation of ethylbenzenes and propylbenzenes. The equilibrium constant for the reaction between R + O2 ⇔ RO2 in the alkylbenzene system was found to be dependent on the position of O2 in RO2 relative to the aromatic ring. The activation energies and the pre-exponential factors for the isomerization reactions of RO2 were also calculated using the transition state theories based on the calculated structures predicted by the density functional theory. It was confirmed that (1, 3) H-atom migration in the alkyl side chain or O2-adduct formation played the key roles on the isomerization reactions of RO2 at relatively lower temperature range. At higher temperature HO2 formation is dominant for all reaction systems. The subsequent reactions of O2-adduct complex in the ethylbenzene system were also searched and the possible roles on the pathway of the benzene-ring cleavage reaction from the O2-adduct complex were suggested.

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© 2011 一般社団法人 日本燃焼学会
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