首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Intersystem crossing and dynamics in O(~3P) + C_2H_4 multichannel reaction: Experiment validates theory
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Intersystem crossing and dynamics in O(~3P) + C_2H_4 multichannel reaction: Experiment validates theory

机译:O(〜3P)+ C_2H_4多通道反应的系统间交叉和动力学:实验验证理论

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The O(~3P) + C_2H_4 reaction, of importance in combustion and atmospheric chemistry, stands out as a paradigm reaction involving triplet- and singlet-state potential energy surfaces (PESs) interconnected by intersystem crossing (ISC). This reaction poses challenges for theory and experiments owing to the ruggedness and high dimensionality of these potentials, as well as the long lifetimes of the collision complexes. Primary products from five competing channels (H + CH_2CHO, H + CH_3CO, H2 + CH_2CO, CH_3 + HCO, CH_2+ CH_2O) and branching ratios (BRs) are determined in crossed molecular beam experiments with soft electron-ionization mass-spec-trometric detection at a collision energy of 8.4 kcal/mol. As some of the observed products can only be formed via ISC from triplet to singlet PESs, from the product BRs the extent of ISC is inferred. A new full-dimensional PES for the triplet state as well as spin-orbit coupling to the singlet PES are reported, and roughly half a million surface hopping trajectories are run on the coupled singlet-triplet PESs to compare with the experimental BRs and differential cross-sections. Both theory and experiment find almost equal contributions from the two PESs to the reaction, posing the question of how important is it to consider the ISC as one of the nonadiabatic effects for this and similar systems involved in combustion chemistry. Detailed comparisons at the level of angular and translational energy distributions between theory and experiment are presented for the two primary channel products, CH_3 + HCO and H + CH_2CHO. The agreement between experimental and theoretical functions is excellent, implying that theory has reached the capability of describing complex multichannel nonadiabatic reactions.
机译:O(〜3P)+ C_2H_4反应在燃烧和大气化学中很重要,它是一种范式反应,涉及通过系统间交叉(ISC)相互连接的三重态和单重态势能面(PES)。由于这些电位的坚固性和高维性以及碰撞配合物的长寿命,因此该反应对理论和实验提出了挑战。在具有软电子电离质谱检测的交叉分子束实验中,确定了五个竞争通道(H + CH_2CHO,H + CH_3CO,H2 + CH_2CO,CH_3 + HCO,CH_2 + CH_2O)的初级产物和支化比(BRs)。碰撞能量为8.4 kcal / mol。由于某些观察到的产物只能通过ISC从三重态到单重态PES形成,因此从产物BR推断出ISC的程度。报道了一种用于三重态的新的全尺寸PES以及与单重态PES的自旋轨道耦合,并且在耦合的单重态-三重态PES上运行了大约一百万次的表面跳跃轨迹,以与实验BR和差分交叉进行比较。部分。理论和实验都发现两种PES对反应的贡献几乎相等,这就提出了一个问题,即考虑将ISC作为涉及燃烧化学的该系统和类似系统的非绝热效应之一,这一点有多重要。针对两种主要通道产物CH_3 + HCO和H + CH_2CHO,在理论和实验之间的角度和平移能量分布级别进行了详细比较。实验功能和理论功能之间的一致性非常好,这表明理论已经可以描述复杂的多通道非绝热反应。

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