首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Gas phase Boudouard reactions involving singlet-singlet and singlet-triplet CO vibrationally excited states: implications for the non-equilibrium vibrational kinetics of CO/CO2 plasmas
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Gas phase Boudouard reactions involving singlet-singlet and singlet-triplet CO vibrationally excited states: implications for the non-equilibrium vibrational kinetics of CO/CO2 plasmas

机译:涉及单线态和单态 - Triplet Co振动激发状态的气相Boudouard反应:CO / CO2等离子体的非平衡振动动力学的影响

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摘要

Rate constants for the Boudouard reactions: CO+ CO -> CO2 + C and CO+ CO -> C2O+ O, involving ground and vibrationally excited states for both singlet-singlet and singlet-triplet reactant CO molecules, have been obtained by using the transition-state theory on an ab initio generated potential energy surface. The dependence of the activation energies for the different processes on the vibrational energy of reactants has been estimated through a parametrization that accounts for the utilization of vibrational energy and is calculated by the forward and backward ab initio activation energies of the relevant processes at zero vibrational energy. The results and their comparison with available experimental reaction rates demonstrate the importance of vibrational excitation not only for the singlet-singlet reactions, but also for the singlet-triplet ones, which are here investigated for the first time. Finally, the implications of the present results on the kinetics of CO/CO2 cold plasmas are discussed: for their modeling the temperature dependence of the obtained rates for singlet-singlet and singlet-triplet reactants in the ground vibrational states have been represented by both Arrhenius and deformed Arrhenius equations.
机译:Boudouard反应的率常数:Co + Co - > CO 2 + C和CO + CO - > C2O + O,用于通过使用过渡状态获得术语和垂直于单态三重态反应物CO分子的研磨和振动激发的状态关于AB初始潜在能量表面的理论。通过参数化估计用于利用振动能量的参数化并通过相关工艺的前向和向后AB初始激活能量来估计激活能量对反应物的振动能量的不同过程的依赖性。 。结果及其与可用实验反应率的比较证明了振动激发的重要性不仅适用于单线态反应,而且还表现出单态翻码反应,而且对于单身三重态的反应,其在这里首次研究。最后,讨论了当前结果对CO / CO2冷等离子体动力学的影响:为其对地面振动状态中所获得的单线态和单态 - 三重素反应物的所得速率的温度依赖性的依赖性已由Arrhenius表示和变形的Arrenius方程。

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