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负离子的光电子成像:从原子阴离子到分子团簇

Photoelectron imaging of negative ions: atomic anions to molecular clusters.

作者信息

Mabbs Richard, Surber Eric, Sanov Andrei

机构信息

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

出版信息

Analyst. 2003 Jun;128(6):765-72. doi: 10.1039/b300103b.

Abstract

The negative ion photoelectron imaging technique is illustrated using two relatively simple atomic and molecular anion systems, and then applied to the study of a cluster system. Photoelectron images of I- and CS2- at 267 nm and 800 nm respectively are presented. Photoelectron spectra and angular distributions are obtained from the images and the concepts underlying these and their interpretation are outlined. The imaging technique is then applied to (CS2)n - (n = 2-4) cluster anions, for which 400 nm images are presented. Features of these images are highlighted and discussed with reference to solvation effects and structural properties of the cluster anionic moiety. Photoelectron signatures of different forms of the cluster core are discussed. These core structures are anionic monomer units solvated by the remaining n - 1 CS2 molecules or covalent dimer units solvated by the remaining n - 2 molecules. Images of the n = 2 anion at 400, 530 and 800 nm reveal information about the electron detachment processes within the different cluster types and both direct detachment and autodetachment are seen. The direct transitions are seen from clusters with either core type, while autodetachment is only seen from clusters with the covalent dimer core. The imaging work also reveals evidence of a previously unreported electronic transition within the direct detachment band due to the covalently bound core type.

摘要

本文利用两个相对简单的原子和分子阴离子体系阐述了负离子光电子成像技术,然后将其应用于团簇体系的研究。分别给出了I⁻和CS₂⁻在267 nm和800 nm处的光电子图像。从这些图像中获得了光电子能谱和角分布,并概述了其背后的概念及其解释。然后将该成像技术应用于(CS₂)ₙ⁻(n = 2 - 4)团簇阴离子,给出了其400 nm的图像。结合团簇阴离子部分的溶剂化效应和结构性质,突出并讨论了这些图像的特征。讨论了团簇核心不同形式的光电子特征。这些核心结构是由其余n - 1个CS₂分子溶剂化的阴离子单体单元或由其余n - 2个分子溶剂化的共价二聚体单元。n = 2阴离子在400、530和800 nm处的图像揭示了不同团簇类型内电子脱离过程的信息,同时观察到了直接脱离和自脱离。两种核心类型的团簇都观察到了直接跃迁,而自脱离仅在具有共价二聚体核心的团簇中观察到。成像工作还揭示了由于共价结合的核心类型,在直接脱离带内存在先前未报道的电子跃迁的证据。

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