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低温冷却阴离子的慢光电子速度映射成像

Slow Photoelectron Velocity-Map Imaging of Cryogenically Cooled Anions.

作者信息

Weichman Marissa L, Neumark Daniel M

机构信息

Department of Chemistry, University of California, Berkeley, California 94720, USA; email:

Current affiliation: JILA, National Institute of Standards and Technology, Boulder, Colorado 80305, USA.

出版信息

Annu Rev Phys Chem. 2018 Apr 20;69:101-124. doi: 10.1146/annurev-physchem-050317-020808. Epub 2018 Jan 24.

Abstract

Slow photoelectron velocity-map imaging spectroscopy of cryogenically cooled anions (cryo-SEVI) is a powerful technique for elucidating the vibrational and electronic structure of neutral radicals, clusters, and reaction transition states. SEVI is a high-resolution variant of anion photoelectron spectroscopy based on photoelectron imaging that yields spectra with energy resolution as high as 1-2 cm. The preparation of cryogenically cold anions largely eliminates hot bands and dramatically narrows the rotational envelopes of spectral features, enabling the acquisition of well-resolved photoelectron spectra for complex and spectroscopically challenging species. We review the basis and history of the SEVI method, including recent experimental developments that have improved its resolution and versatility. We then survey recent SEVI studies to demonstrate the utility of this technique in the spectroscopy of aromatic radicals, metal and metal oxide clusters, nonadiabatic interactions between excited states of small molecules, and transition states of benchmark bimolecular reactions.

摘要

低温冷却阴离子的慢光电子速度映射成像光谱(cryo-SEVI)是一种用于阐明中性自由基、团簇和反应过渡态的振动和电子结构的强大技术。SEVI是基于光电子成像的阴离子光电子能谱的高分辨率变体,能产生能量分辨率高达1-2厘米的光谱。低温冷阴离子的制备在很大程度上消除了热谱带,并显著缩小了光谱特征的转动包络,从而能够获取复杂且光谱分析具有挑战性的物种的高分辨率光电子能谱。我们回顾了SEVI方法的基础和历史,包括最近提高其分辨率和通用性的实验进展。然后,我们概述了最近的SEVI研究,以证明该技术在芳香族自由基、金属和金属氧化物团簇、小分子激发态之间的非绝热相互作用以及基准双分子反应的过渡态光谱学中的应用。

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