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The dynamics of the H+D_2O- OD+HD reaction at 2.5 eV: Experiment and theory

机译:2.5 eV时H + D_2O-> OD + HD反应的动力学:实验和理论

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The title reaction has been studied both experimentally and computationally at a mean collision energy of 2.48 eV. OD quantum state populations, rotational alignment parameters, rovibrational quantum state-resolved center-of-mass angular scattering distributions and HD co-product internal energy release distributions have been determined, along with OD quantum state averatged energy disposals. The experiments employ pulsed laser photolysis coupled with polarized Doppler-resolved laser induced fluorescence detection of the radical products. The OD angular scattering distributions show a preference for scattering in the forward direction, and are quite different from those observed previously at the lower collision energy of 1.4 eV.So too are the kinetic energy release distributions, which reveal that the HD co-products are born significantly more internally excited at 2.48 eV than at 1.4 eV. The HD internal energy distributions obtained from analysis of the Doppler resoved profiles are in reasonable accord with that derived from the direct HD population measurements performed by Zare and co-workers [J. Chem. Phys. 98, 4636 (1993)] at collision energies around 2.7 eV. The data are compared in detail with the results of new quasi-classical trajectory (QCT) calculations employing two alternative potential energy surfaces (PESs), as well as with the results from previous QCT studies of the title reaction by other workers. Refinements to the most recent of the PESs employed here, that developed using the iterative methods of Collins and Zhang and co-workers [J. Chem. Phys. 115, 174 (2001)], are also described. The theoretical results obtained using this refined PES agree very well with many of the experimental observables, and the surface appears to be a significant improvement on those previously developed. However, even with this new PES, the QCT calculations at 2.48 eV overestimate the internal excitation of the HD products.
机译:在2.48 eV的平均碰撞能量下,已经通过实验和计算研究了标题反应。已经确定了OD量子态总体,旋转对准参数,旋转振动量子态分辨的质心角散射分布和HD副产物内部能量释放分布,以及OD量子态平均能量处置。实验采用脉冲激光光解法和偏振多普勒分辨的激光诱导的自由基产物荧光检测。 OD角散射分布表现出对正向散射的偏爱,与先前在1.4 eV的较低碰撞能量下观察到的有很大不同,动能释放分布也是如此,这表明HD副产物为出生时在2.48 eV时比在1.4 eV时内部激发明显更多。从多普勒解救剖面的分析中获得的高清内部能量分布与由扎尔及其同事进行的直接高清人口测量得出的结果合理地一致[J.化学物理98,4636(1993)]在约2.7 eV的碰撞能量下发生。将数据与使用两个替代势能面(PES)的新准古典轨迹(QCT)计算的结果进行了详细比较,并与以前的其他工人进行的标题反应的QCT研究结果进行了比较。使用柯林斯和张及其同事的迭代方法开发的对此处使用的最新PES的改进[J.化学物理115,174(2001)]。使用这种精制的PES获得的理论结果与许多实验可观察到的结果非常吻合,并且表面似乎是对先前开发的表面的重大改进。但是,即使有了这种新的PES,在2.48 eV处的QCT计算也高估了HD产品的内部激励。

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