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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Kinetic energy release distributions from dissociative photoionization of weakly bound trimers at 14-27 eV
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Kinetic energy release distributions from dissociative photoionization of weakly bound trimers at 14-27 eV

机译:在14-27eV下,从离灭的微弱三聚体的解离光相消除的动力释放分布

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摘要

The formation of the intriguing ions C4H6O+, C6H6Cl+, and C6H6O+, by dissociative ionization of heterotrimers of butadiene/sulfur dioxide, benzene/hydrogen chloride and benzene/oxygen by 14-27 eV photons, illustrates the possibility that VUV irradiation of clusters comprised of three or more molecules could provide a route to make ions containing bonds not previously accessible. Kinetic energy release distributions were measured in an attempt to understand the formation of these ions and why clusters larger than dimers are needed. Standard theory was applied to find whether more complicated theoretical treatments are needed to understand the data. It was found that all of the above ions were most likely produced by essentially the same mechanism: excitation of one moiety, transfer of its excitation energy to the moiety that dissociates, followed by slow decay of the remaining excited ion into the unexcited moiety as the "solvent'' plus the ion with the new bond. The very low reaction probabilities to produce these ions, combined with very low target densities in the presence of many orders of magnitude higher densities of other molecules, precluded the usual imaging techniques. However, we found that the retarding-potential method can give useful data. Also, at present laser photon energies higher than 15 eV provide significantly smaller average intensities than are needed.
机译:通过丁二烯/硫二氧化硫,苯/氯化氢和苯/氧的异映转移,通过14-27eV光子的异映转移的诱导离子C4H6O +,C6H6Cl +和C6H6O +的形成说明了VUV照射由三个组成的簇的可能性或者更多的分子可以提供使离子含有未以前可接受的粘合的途径。测量动能释放分布以试图理解这些离子的形成以及为什么需要大于二聚体的簇。应用标准理论,以查找是否需要更复杂的理论治疗来理解数据。发现所有上述离子最有可能产生基本相同的机制:一个部分的激发,其激发能量转移到离解的部分,然后将剩余的激发离子缓慢衰减到未经激发的部分中“溶剂”加上新键的离子。产生这些离子的低反应概率,与其他分子的许多数量级较高的密度存在非常低的目标密度,排除了通常的成像技术。然而,我们发现延迟电位方法可以提供有用的数据。此外,目前,高于15eV的激光光子能量提供明显更小的平均强度。

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