簇解离动力学

R. Keesee, A. Castleman
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引用次数: 0

摘要

簇电离和解离的研究具有广泛的兴趣,因为它们有助于进一步理解多光子电离后的分子间能量流动和能量处置,以及物质从气体到凝聚态转变的变化性质。通过使用多光子电离方法和飞行时间反射技术,单分子解离和团簇光谱研究取得了重大进展。使用单色和双色脉冲激光器,可以控制引入集群的多余能量。最近对氢键团簇系统内部离子-分子反应后团簇破碎的研究结果证明了该方法的有效性。讨论了离解作用和簇离子热化学稳定性对某些簇分布中幻数出现的影响。本文还介绍了该方法在研究光谱位移和测定探针分子与溶剂连续聚类后的电离势方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of cluster dissociation
Studies of cluster ionization and dissociation are of wide-ranging interest as they contribute to a further understanding of inter-molecular energy flow and energy disposal following multiphoton ionization, as well as on the changing properties of matter undergoing transitions from the gas to condensed phase. A major advance in the study of unimolecular dissociation and the spectroscopy of clusters has become available through the use of multi-photon ionization methods coupled with time-of-flight reflectron techniques. Using single and two-color pulsed lasers, the excess energy introduced into a cluster can be controlled. The power of the method is demonstrated by results of recent investigations of cluster fragmentation following internal ion-molecule reactions in hydrogen bonded cluster systems. The role of dissociation and the influence of the thermochemical stability of cluster ions in affecting the appearance of magic numbers in certain cluster distributions is discussed. The application of this method in studying spectral shifts and determining ionization potentials of probe molecules following successive clustering with a solvent species is also presented.
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