首页> 外文期刊>The Journal of Chemical Physics >PHOTOFRAGMENTATION OF MASS-SELECTED ICI-(CO2)(N) CLUSTER IONS - SOLVATION EFFECTS ON THE STRUCTURE AND DYNAMICS OF THE IONIC CHROMOPHORE
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PHOTOFRAGMENTATION OF MASS-SELECTED ICI-(CO2)(N) CLUSTER IONS - SOLVATION EFFECTS ON THE STRUCTURE AND DYNAMICS OF THE IONIC CHROMOPHORE

机译:质谱选择的ICI-(CO2)(N)团簇离子的光破碎-溶剂化对离子型铬的结构和动力学的影响

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Photofragmentation studies at 644 nm and 740 nm of ICI-(CO2)(n) cluster ions (n=0-8) have been carried out in a tandem time-of-flight mass spectrometer. Photodissociation of these cluster ions at a wavelength at which bare ICl- produces only I- results in the formation of three classes of fragment ions: I-, Cl-, and ICl- based clusters. The I- based clusters correspond to the direct photoproduct in which a Cl atom has escaped the cluster ion. The ICl- and Cl- based clusters are a result of a nonadiabatic electronic transition to the ground state mediated by the solvent. The relative importance of these photofragment channels strongly depends on the cluster ion size. An ICl- caged product is first observed for ICl-(CO2)(2), increasing rapidly to a maximum at n approximate to 6 and then decreasing. This caging efficiency is dramatically different from the I-2(-)(CO2)(n) cluster ions where complete caging was observed for 16 solvent molecules. The Cl- photofragment channel increases smoothly for the cluster size range studied and becomes the dominant channel for n=8. The relative yields of the ICl- and Cl- based products reflect the extent to which solvation influences the photodissociation pathways of ICl-. (C) 1996 American Institute of Physics. [References: 66]
机译:在串联飞行时间质谱仪中进行了ICI-(CO2)(n)团簇离子(n = 0-8)在644 nm和740 nm处的光碎裂研究。这些簇离子在裸露的ICl-仅产生I-的波长下进行光解,导致形成三类碎片离子:基于I-,Cl-和ICl的簇。基于I的簇对应于其中Cl原子已经逸出簇离子的直接光产物。基于ICl和Cl的簇是溶剂介导的非绝热电子跃迁至基态的结果。这些光碎通道的相对重要性在很大程度上取决于簇离子的大小。首先观察到ICl-笼状产物的ICl-(CO2)(2),在n接近6时迅速增加至最大值,然后下降。这种笼装效率与I-2(-)(CO2)(n)团簇离子显着不同,在I-2(-)(CO2)(n)团簇离子中,对16个溶剂分子观察到完全笼罩。在研究的簇尺寸范围内,Cl-光碎片通道平稳增加,并成为n = 8的主导通道。 ICl-和Cl-基产物的相对产率反映了溶剂化影响ICl-的光解离途径的程度。 (C)1996年美国物理研究所。 [参考:66]

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