首页> 外文期刊>Physical chemistry chemical physics: PCCP >Theoretical study of the mechanisms and kinetics of the reactions of hydroperoxy (HO2) radicals with hydroxymethylperoxy (HOCH2O2) and methoxymethylperoxy (CH3OCH2O2) radicals
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Theoretical study of the mechanisms and kinetics of the reactions of hydroperoxy (HO2) radicals with hydroxymethylperoxy (HOCH2O2) and methoxymethylperoxy (CH3OCH2O2) radicals

机译:氢过氧(HO2)自由基与羟甲基过氧(HOCH2O2)和甲氧基甲基过氧(CH3OCH2O2)自由基反应机理和动力学的理论研究

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摘要

The reactions of hydroperoxy radicals with hydroxymethylperoxy and methoxymethylperoxy radicals were studied using the hybrid density functional theory and the coupled-cluster theory with complete basis set extrapolation. In contrast with the unsubstituted alkylperoxy reactions, it was found that OH-substitution has a significant effect on the reaction mechanism. Several hydrogen bonding reaction precursors exist at the start of the reaction. The reaction pathways show a strongly anisotropic character. The preferred transition states are four-, five-, six-, or seven-membered cyclic structures. The predicted rate coefficients are expressed as k(T) = 8.48 × 10~(-24)T~(355)e~(2164/T) + 2.37 × 10~(-29)T~(4.70)e~(3954/T) cm~3 molecule~(-1) s~(-1). Based on the available experimental data in the temperature range 275-333 K, the theoretical and experimental results are in agreement with a relative average deviation of only 8%. The nascent products at low and high temperatures are hydroperoxide molecules and hydroxyl radicals, respectively. A potential source has been found for the production of formic acid and new insights into the experimental observations are presented.
机译:利用杂化密度泛函理论和偶合簇理论,采用完全基集外推法研究了氢过氧自由基与羟甲基过氧自由基和甲氧基甲基过氧自由基的反应。与未取代的烷基过氧反应相反,发现OH取代对反应机理具有显着影响。在反应开始时存在几种氢键合反应前体。反应路径显示出强烈的各向异性特征。优选的过渡态是四元,五元,六元或七元循环结构。预测的速率系数表示为k(T)= 8.48×10〜(-24)T〜(355)e〜(2164 / T)+ 2.37×10〜(-29)T〜(4.70)e〜(3954) / T)cm〜3分子〜(-1)s〜(-1)。根据在275-333 K温度范围内可获得的实验数据,理论和实验结果的相对平均偏差仅为8%。在低温和高温下新生的产物分别是氢过氧化物分子和羟基自由基。已经发现了产生甲酸的潜在来源,并提出了对实验观察的新见解。

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