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由振动泛频激发诱导的光化学过程:顺式-HONO、反式-HONO、HNO₃ 以及 HNO₃-H₂O 的动力学模拟

Photochemical processes induced by vibrational overtone excitations: dynamics simulations for cis-HONO, trans-HONO, HNO3, and HNO3-H2O.

作者信息

Miller Y, Chaban G M, Finlayson-Pitts B J, Gerber R B

机构信息

Department of Physical Chemistry and Fritz Haber Research Center, The Hebrew University, Jerusalem 91904, Israel.

出版信息

J Phys Chem A. 2006 Apr 27;110(16):5342-54. doi: 10.1021/jp0559940.

Abstract

Photochemical processes in HNO3, HNO3-H2O, and cis- and trans-HONO following overtone excitation of the OH stretching mode are studied by classical trajectory simulations. Initial conditions for the trajectories are sampled according to the initially prepared vibrational wave function. Semiempirical potential energy surfaces are used in "on-the-fly" simulations. Several tests indicate at least semiquantitative validity of the potential surfaces employed. A number of interesting new processes and intermediate species are found. The main results include the following: (1) In excitation of HNO3 to the fifth and sixth OH-stretch overtone, hopping of the H atom between the oxygen atoms is found to take place in nearly all trajectories, and can persist for many picoseconds. H-atom hopping events have a higher yield and a faster time scale than the photodissociation of HNO3 into OH and NO2. (2) A fraction of the trajectories for HNO3 show isomerization into HOONO, which in a few cases dissociates into HOO and NO. (3) For high overtone excitation of HONO, isomerization into the weakly bound species HOON is seen in all trajectories, in part of the events as an intermediate step on the way to dissociation into OH + NO. This process has not been reported previously. Well-established processes for HONO, including cis-trans isomerization and H hopping are also observed. (4) Only low overtone levels of HNO3-H2O have sufficiently long liftimes to be spectrocopically relevant. Excitation of these OH stretching overtones is found to result in the dissociation of the cluster H hopping, or dissociation of HNO3 does not take place. The results demonstrate the richness of processes induced by overtone excitation of HNO(x) species, with evidence for new phenomena. Possible relevance of the results to atmospheric processes is discussed.

摘要

通过经典轨迹模拟研究了在OH伸缩模式泛频激发后,HNO₃、HNO₃-H₂O以及顺式和反式HONO中的光化学过程。根据最初制备的振动波函数对轨迹的初始条件进行采样。在“即时”模拟中使用半经验势能面。多项测试表明所采用的势能面至少具有半定量的有效性。发现了许多有趣的新过程和中间物种。主要结果如下:(1) 在将HNO₃激发到第五和第六个OH伸缩泛频时,发现几乎所有轨迹中H原子都在氧原子之间跳跃,并且可以持续许多皮秒。H原子跳跃事件的产率更高,时间尺度比HNO₃光解为OH和NO₂更快。(2) HNO₃的一部分轨迹显示异构化为HOONO,在少数情况下会分解为HOO和NO。(3) 对于HONO的高泛频激发,在所有轨迹中都观察到异构化为弱结合物种HOON,在部分事件中这是分解为OH + NO过程中的中间步骤。该过程以前尚未见报道。还观察到HONO已确立的过程,包括顺反异构化和H跳跃。(4) 只有低泛频水平的HNO₃-H₂O具有足够长的寿命以与光谱相关。发现这些OH伸缩泛频的激发会导致团簇解离、H跳跃,或者HNO₃不会发生解离。结果证明了HNO(x)物种泛频激发所引发过程的丰富性,并存在新现象的证据。讨论了这些结果与大气过程可能的相关性。

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