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From the Cover: Chemical Dynamics Special Feature: Probing the resonance potential in the F atom reaction with hydrogen deuteride with spectroscopic accuracy

机译:从封面开始:化学动力学专刊:以光谱精度探测氘代氢与F原子反应中的共振势

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摘要

Reaction resonances are transiently trapped quantum states along the reaction coordinate in the transition state region of a chemical reaction that could have profound effects on the dynamics of the reaction. Obtaining an accurate reaction potential that holds these reaction resonance states and eventually modeling quantitatively the reaction resonance dynamics is still a great challenge. Up to now, the only viable way to obtain a resonance potential is through high-level ab initio calculations. Through highly accurate crossed-beam reactive scattering studies on isotope-substituted reactions, the accuracy of the resonance potential could be rigorously tested. Here we report a combined experimental and theoretical study on the resonance-mediated F + HD → HF + D reaction at the full quantum state resolved level, to probe the resonance potential in this benchmark system. The experimental result shows that isotope substitution has a dramatic effect on the resonance picture of this important system. Theoretical analyses suggest that the full-dimensional FH2 ground potential surface, which was believed to be accurate in describing the resonance picture of the F + H2 reaction, is found to be insufficiently accurate in predicting quantitatively the resonance picture for the F + HD → HF + D reaction. We constructed a global potential energy surface by using the CCSD(T) method that could predict the correct resonance peak positions as well as the dynamics for both F + H2 → HF + H and F + HD → HF + D, providing an accurate resonance potential for this benchmark system with spectroscopic accuracy.
机译:反应共振是在化学反应的过渡态区域中沿反应坐标瞬态捕获的量子态,可能会对反应动力学产生深远影响。获得保持这些反应共振状态的准确反应电位并最终定量建模反应共振动力学仍然是一个巨大的挑战。到目前为止,获得共振电位的唯一可行方法是通过高级从头算。通过对同位素取代反应的高精度横束反应性散射研究,可以严格测试共振势的准确性。在这里,我们报告了在完整的量子态分辨水平下共振介导的F + HD→HF + D反应的实验和理论相结合的研究,以探测该基准系统中的共振电势。实验结果表明,同位素取代对这一重要系统的共振图具有显着影响。理论分析表明,人们认为在描述F + H2反应的共振图时准确的全尺寸FH2地电位表面在定量预测F + HD→HF的共振图方面不够准确。 + D反应。我们使用CCSD(T)方法构造了一个全局势能面,可以预测正确的共振峰位置以及F + H2→HF + H和F + HD→HF + D的动力学,从而提供准确的共振具有光谱准确性的基准系统的潜力。

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