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Rate coefficients for the reaction of OH radicals with cis-3-hexene: an experimental and theoretical study

机译:OH自由基与顺式3-己烯反应的速率系数:实验和理论研究

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The kinetics of the cis-3-hexene + OH reaction were investigated by an experimental relative rate method and at the density functional theory level. The experimental set-up consisted of a 200 L Teflon bag, operated at atmospheric pressure and 298 K. OH radicals were produced by the photolysis of H2O2 at 254 nm. Relative rate coefficients were determined by comparing the decays of the cis-3-hexene and reference compounds (cyclohexene, 2-buten-1-ol and allyl ether). The mean second-order rate coefficient value found was (6.27 +/- 0.66) x 10(-11) cm(3) molecule(-1) s(-1), the uncertainty being estimated by propagation of errors. Theoretical calculations for the addition reaction of OH to cis-3-hexene have also been performed, at the BHandHLYP/aug-cc-pVDZ level, in order to investigate the reaction mechanism, to clarify the experimental observations and to model the reaction kinetics. Different conformations of the reactants, pre-barrier complexes and saddle points were considered in our calculations. The individual rate coefficients, calculated for each conformer of the reactant, at 298 K, using a microcanonical variational transition state method, are 4.19 x 10(-11) and 1.23 x 10(-10) cm(3) molecule(-1) s(-1). The global rate coefficient was estimated from the Boltzmann distribution of the conformers to be 8.10 x 10(-11) cm(3) molecule(-1) s(-1), which is in agreement with the experimental value. Rate coefficients calculated over the temperature range from 200-500 K are also given. Our results suggest that the complex mechanism, explicitly considering different conformations for the stationary points, must be taken into account for a proper description of the reaction kinetics.
机译:通过实验相对速率法并在密度泛函理论水平上研究了顺-3-己烯+ OH反应的动力学。实验装置由一个200 L的Teflon袋组成,该袋在大气压力和298 K的条件下运行。H2O2在254 nm处的光解产生了OH自由基。通过比较顺式-3-己烯和参考化合物(环己烯,2-丁烯-1-醇和烯丙基醚)的衰减来确定相对速率系数。发现的平均二阶速率系数值为(6.27 +/- 0.66)x 10(-11)cm(3)分子(-1)s(-1),不确定性是通过误差的传播来估计的。为了研究反应机理,阐明实验结果并模拟反应动力学,还以BHandHLYP / aug-cc-pVDZ的水平进行了OH与顺式-3-己烯加成反应的理论计算。在我们的计算中考虑了反应物的不同构型,预屏障配合物和鞍点。使用微规范变分过渡态方法在298 K下为反应物的每个构象异构体计算的单个速率系数为4.19 x 10(-11)和1.23 x 10(-10)cm(3)分子(-1) s(-1)。从构象的玻尔兹曼分布估计的整体速率系数为8.10 x 10(-11)cm(3)分子(-1)s(-1),与实验值一致。还给出了在200-500 K的温度范围内计算出的速率系数。我们的结果表明,对于反应动力学的正确描述,必须考虑复杂机制,明确考虑固定点的不同构象。

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