Dipartimento di Chimica, Biologia e Biotecnologie, Università Degli Studi di Perugia, Perugia 06123, Italy.
Master-Tec Srl, Via Sicilia, 41, Perugia 06128, Italy.
J Phys Chem A. 2023 Jun 1;127(21):4609-4623. doi: 10.1021/acs.jpca.2c08662. Epub 2023 May 19.
The reaction between the ground-state hydroxyl radical, OH(Π), and ethylene, CH, has been investigated under single-collision conditions by the crossed molecular beam scattering technique with mass-spectrometric detection and time-of-flight analysis at the collision energy of 50.4 kJ/mol. Electronic structure calculations of the underlying potential energy surface (PES) and statistical Rice-Ramsperger-Kassel-Marcus (RRKM) calculations of product branching fractions on the derived PES for the addition pathway have been performed. The theoretical results indicate a temperature-dependent competition between the -/-CHCHOH (vinyl alcohol) + H, CHCHO (acetaldehyde) + H, and HCO (formaldehyde) + CH product channels. The yield of the H-abstraction channel could not be quantified with the employed methods. The RRKM results predict that under our experimental conditions, the - and -CHCHOH + H product channels account for 38% (in similar amounts) of the addition mechanism yield, the HCO + CH channel for ∼58%, while the CHCHO + H channel is formed in negligible amount (<4%). The implications for combustion and astrochemical environments are discussed.
在 50.4kJ/mol 的碰撞能下,通过交叉分子束散射技术与质谱检测和飞行时间分析,在单分子碰撞条件下研究了基态羟基自由基 OH(Π)与乙烯 CH 的反应。对潜在的电子结构计算和添加途径上衍生的 PES 的产物分支分数的统计 Rice-Ramsperger-Kassel-Marcus(RRKM)计算进行了研究。理论结果表明,在温度依赖性的竞争之间的-/-CHCHOH(乙醇)+ H,CHCHO(乙醛)+ H 和 HCO(甲醛)+ CH 产物通道。H 提取通道的产率无法用所采用的方法进行量化。RRKM 结果预测,在我们的实验条件下,-和-CHCHOH+H 产物通道占加成机制产率的 38%(数量相似),HCO+CH 通道占约 58%,而 CHCHO+H 通道形成的量可以忽略不计(<4%)。讨论了其对燃烧和天体化学环境的影响。