Cavallotti Carlo, De Falco Carlo, Pratali Maffei Luna, Caracciolo Adriana, Vanuzzo Gianmarco, Balucani Nadia, Casavecchia Piergiorgio
Dipartimento di Chimica, Materiali e Ingegneria Chimica "Giulio Natta", Politecnico di Milano, 20131 Milano, Italy.
Dipartimento di Matematica, Politecnico di Milano, 20131 Milano, Italy.
J Phys Chem Lett. 2020 Nov 19;11(22):9621-9628. doi: 10.1021/acs.jpclett.0c02866. Epub 2020 Oct 30.
The extent of intersystem crossing in the O(P) + CH reaction, a prototypical system for spin-forbidden reactions in oxygenated aromatic molecules, is theoretically evaluated for the first time. Calculations are performed using nonadiabatic transition-state theory coupled with stochastic master equation simulations and Landau-Zener theory. It is found that the dominant intersystem crossing pathways connect the T2 and S0 potential energy surfaces through at least two distinct minimum-energy crossing points. The calculated channel-specific rate constants and intersystem crossing branching fractions differ from previous literature estimates and provide valuable kinetic data for the investigation of benzene and polycyclic aromatic hydrocarbons oxidation in interstellar, atmospheric, and combustion conditions. The theoretical results are supported by crossed molecular beam experiments with electron ionization mass-spectrometric detection and time-of-flight analysis at 8.2 kcal/mol collision energy. This system is a suitable benchmark for theoretical and experimental studies of intersystem crossing in aromatic species.
O(P) + CH反应是含氧芳香分子中自旋禁阻反应的典型体系,首次对其系间窜越程度进行了理论评估。计算采用非绝热过渡态理论,并结合随机主方程模拟和朗道 - 齐纳理论。研究发现,主要的系间窜越途径通过至少两个不同的最小能量交叉点连接T2和S0势能面。计算得到的通道特异性速率常数和系间窜越分支比与先前文献估计值不同,为研究星际、大气和燃烧条件下苯和多环芳烃的氧化提供了有价值的动力学数据。在8.2 kcal/mol碰撞能量下,通过电子电离质谱检测和飞行时间分析的交叉分子束实验支持了理论结果。该体系是芳香族物种系间窜越理论和实验研究的合适基准。