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Simplified Analysis and Representation of Multichannel Thermal Unimolecular Reactions

机译:多通道热分流反应的简化分析与表示

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摘要

Two-channel and multichannel thermal unimolecular reactions are analyzed by simple models, starting with the calculation of separated-channel rate constants and accounting for intrinsic channel coupling afterward. Reactions with rigid- and with loose-activated complex channels are distinguished. Weak-collision, energy-transfer, effects are suggested to govern the competition between rigid-activated complex channels, while angular-momentum, "rotational channel switching", effects dominate the competition between rigid- and loose-activated complex channels. The models are tested against master equation treatments of the dissociations of formaldehyde and of glyoxal from the literature. Besides giving insight into the influence of various molecular input parameters, the present approach leads to compact representations of rate constants suitable for inclusion in databases.
机译:通过简单的模型分析双通道和多通道热分流反应,从分离通道速率常数的计算开始,并占后方的内在通道耦合。 区分刚性和刚性激活的复杂通道的反应。 疲劳碰撞,能量转移,效果都建议管理刚性激活复杂通道之间的竞争,而角动量“旋转通道切换”,效果主导刚性和松动的复杂通道之间的竞争。 该模型对甲醛和乙醛与文献的母醛和乙醛进行过的母型方程处理。 除了深入了解各种分子输入参数的影响之外,本方法还导致适合包含在数据库中的速率常数的紧凑型表示。

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