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State-correlated DC slice imaging of formaldehyde photodissociation: roaming atoms and multichannel branching

机译:甲醛光解离的状态相关直流切片成像:漫游原子和多通道分支

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摘要

High-resolution slice imaging methods allow for detection of single product quantum states with sufficient velocity resolution to infer the full correlated product state distribution of the undetected fragment. This is a level of detail not available in previous studies of formaldehyde photodissociation, and in this application it reveals startling new aspects of unimolecular decomposition. The CO rotational distributions from near ultraviolet dissociation of formaldehyde are bimodal, and the imaging experiments allow us to decompose these into two dynamically distinct components: the conventional molecular dissociation over a high exit barrier, and a novel 'roaming atom' reaction in which frustrated radical dissociation events lead to intramolecular H abstraction, bypassing the transition state entirely. In probing the dynamics of the conventional molecular dissociation over the barrier, we use the complete v(H2)-jCO correlation to model the exit channel dynamics in new detail. Furthermore, these state-correlated measurements provide insight into radical-radical reactions and the underlying dynamics and energy dependence of the roaming pathway.
机译:高分辨率切片成像方法允许以足够的速度分辨率检测单个产物量子状态,以推断未检测片段的完整相关产物状态分布。这是以前的甲醛光解离研究无法获得的详细程度,在本申请中它揭示了单分子分解的惊人新方面。甲醛的近紫外线离解产生的CO旋转分布是双峰的,并且成像实验使我们能够将其分解为两个动态不同的组分:在高出口壁垒上的常规分子离解,以及新的“漫游原子”反应,其中沮丧的自由基解离事件导致分子内H的抽象,完全绕过过渡态。在探查屏障上常规分子解离的动力学时,我们使用完整的v(H2)-jCO相关性以新的细节对出口通道动力学进行建模。此外,这些与状态相关的度量还提供了对自由基自由基反应以及漫游路径潜在的动力学和能量依赖性的了解。

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