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Extremely rapid self-reaction of the simplest Criegee intermediate CH2OO and its implications in atmospheric chemistry

机译:最简单的Criegee中间体CH2OO的极快自我反应及其对大气化学的影响

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Criegee intermediates, which are carbonyl oxides produced when ozone reacts with unsaturated hydrocarbons, play an important role in the formation of OH and organic acids in the atmosphere, but they have eluded direct detection until recently. Reactions that involve Criegee intermediates are not understood fully because data based on their direct observation are limited. We used transient infrared absorption spectroscopy to probe directly the decay kinetics of formaldehyde oxide (CHzOO) and found that it reacts with itself extremely rapidly. This fast self-reaction is a result of its zwitterionic character. According to our quantum-chemical calculations, a cyclic dimeric intermediate that has the terminal O atom of one CH2OO bonded to the C atom of the other CHzOO is formed with large exothermicity before further decomposition to 2H2CO + O2(~1Δ_g). We suggest that the inclusion of this previously overlooked rapid reaction in models may affect the interpretation of previous laboratory experiments that involve Criegee intermediates.
机译:Criegee中间体是臭氧与不饱和烃反应时产生的羰基氧化物,在大气中OH和有机酸的形成中起着重要作用,但是直到最近,它们仍未得到直接检测。涉及Criegee中间体的反应尚不完全清楚,因为基于其直接观察的数据有限。我们使用瞬态红外吸收光谱法直接探测了氧化甲醛(CHzOO)的衰减动力学,发现它与自身的反应非常迅速。这种快速的自反应是其两性离子特性的结果。根据我们的量子化学计算,在进一步分解为2H2CO + O2(〜1Δ_g)之前,形成了一个高放热性的环状二聚中间体,该中间体具有一个CH2OO的末端O原子与另一个CHzOO的C原子键合。我们建议在模型中包含此先前被忽略的快速反应可能会影响涉及Criegee中间体的先前实验室实验的解释。

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