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水分子介导下(CS2)2(-)弛豫至其全局最小值:光电子成像研究

Relaxation of (CS2)2(-) to its global minimum mediated by water molecules: photoelectron imaging study.

作者信息

Habteyes Terefe, Velarde Luis, Sanov Andrei

机构信息

Department of Chemistry, University of Arizona, Tucson, Arizona 85721-0041, USA.

出版信息

J Phys Chem A. 2008 Oct 16;112(41):10134-40. doi: 10.1021/jp806478g. Epub 2008 Sep 20.

Abstract

The coexistence of several isomers of (CS 2) 2 (-) is examined via photoelectron imaging at 355 and 266 nm. Assisted by theoretical calculations, the bands in the photoelectron spectra are assigned to the CS 2 (-).CS 2 ion-molecule complex ( C s symmetry, (2)A' electronic state) and two covalently bound dimer-anion structures: C 2 v ( (2)B 1) and D 2 h ( (2)B 3g). The isomer distribution depends sensitively on the ion source conditions, particularly the presence of water in the precursor gas mixture. The intensity variation of the photoelectron bands suggests that the presence of water enhances the formation of the global-minimum C 2 v ( (2)B 1) structure, particularly relative to the metastable (local-minimum) ion-molecule complex. This trend is rationalized with two assumptions. The first is that the presence of H 2O at the cluster formation stage facilitates the nonadiabatic transitions necessary for reaching the global-minimum dimer-anion equilibrium when starting from the CS 2 (-) + CS 2 asymptote. The second is that the initial clusters formed in the presence of water tend to have, on average, more internal energy, which is needed for overcoming the potential energy barriers separating the metastable equilibria from the global-minimum structure. As the covalent bonds are formed, excess solvent molecules are evaporated from the cluster, giving rise to stable (CS 2) 2 (-) dimer anions. In the (CS 2) n (-), n >or= 3, and (CS 2) 2 (-)(H 2O) m , m > 0, clusters, the population of the covalent-dimer core structures diminishes drastically due to more favorable solvent interactions with the monomer-anion (i.e., CS 2 (-)) core.

摘要

通过在355和266纳米处的光电子成像研究了(CS₂)₂(-)几种异构体的共存情况。在理论计算的辅助下,光电子能谱中的谱带被归属为CS₂(-)·CS₂离子 - 分子复合物(Cₛ对称性,(²)A'电子态)以及两种共价结合的二聚阴离子结构:C₂ᵥ((²)B₁)和D₂ₕ((²)B₃g)。异构体分布对离子源条件敏感,特别是前驱体气体混合物中是否存在水。光电子谱带的强度变化表明,水的存在增强了全局最小的C₂ᵥ((²)B₁)结构的形成,特别是相对于亚稳的(局部最小)离子 - 分子复合物。这种趋势基于两个假设得到合理解释。第一个假设是,在团簇形成阶段H₂O的存在促进了从CS₂(-) + CS₂渐近线开始到达全局最小二聚阴离子平衡所需的非绝热跃迁。第二个假设是,在水存在下形成的初始团簇平均而言往往具有更多的内能,这是克服将亚稳平衡与全局最小结构分开的势能垒所必需的。随着共价键的形成,过量的溶剂分子从团簇中蒸发,产生稳定的(CS₂)₂(-)二聚阴离子。在(CS₂)ₙ(-),n≥3,以及(CS₂)₂(-)(H₂O)ₘ,m>0的团簇中,由于溶剂与单体阴离子(即CS₂(-))核心之间更有利的相互作用,共价二聚体核心结构的数量急剧减少。

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