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首页> 外文期刊>The Journal of Chemical Physics >Perspective: Electrospray photoelectron spectroscopy: From multiply-charged anions to ultracold anions
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Perspective: Electrospray photoelectron spectroscopy: From multiply-charged anions to ultracold anions

机译:透视图:电喷雾光电子能谱:从多电荷阴离子到超冷阴离子

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Electrospray ionization (ESI) has become an essential tool in chemical physics and physical chemistry for the production of novel molecular ions from solution samples for a variety of spectroscopic experiments. ESI was used to produce free multiply-charged anions (MCAs) for photoelectron spectroscopy (PES) in the late 1990 s, allowing many interesting properties of this class of exotic species to be investigated. Free MCAs are characterized by strong intramolecular Coulomb repulsions, which create a repulsive Coulomb barrier (RCB) for electron emission. The RCB endows many fascinating properties to MCAs, giving rise to meta-stable anions with negative electron binding energies. Recent development in the PES of MCAs includes photoelectron imaging to examine the influence of the RCB on the electron emission dynamics, pump-probe experiments to examine electron tunneling through the RCB, and isomer-specific experiments by coupling PES with ion mobility for biological MCAs. The development of a cryogenically cooled Paul trap has led to much better resolved PE spectra for MCAs by creating vibrationally cold anions from the room temperature ESI source. Recent advances in coupling the cryogenic Paul trap with PE imaging have allowed high-resolution PE spectra to be obtained for singly charged anions produced by ESI. In particular, the observation of dipole-bound excited states has made it possible to conduct vibrational autodetachment spectroscopy and resonant PES, which yield much richer vibrational spectroscopic information for dipolar free radicals than traditional PES. (C) 2015 AIP Publishing LLC.
机译:电喷雾电离(ESI)已成为化学物理学和物理化学中必不可少的工具,用于从溶液样品中产生用于各种光谱实验的新型分子离子。 ESI在1990年代后期被用于生产用于光电子能谱法(PES)的自由多电荷阴离子(MCA),从而使这类外来物种的许多有趣特性得以研究。游离MCA的特征是分子内库仑排斥力强,从而形成了电子发射的排斥库仑势垒(RCB)。 RCB为MCA赋予了许多令人着迷的特性,从而产生了具有负电子结合能的亚稳定阴离子。 MCA的PES的最新进展包括用于检查RCB对电子发射动力学的影响的光电子成像,检查通过RCB的电子隧穿的泵浦探针实验,以及通过将PES与离子迁移率结合用于生物MCA的异构体特异性实验。通过从室温ESI源产生振动冷的阴离子,低温冷却的Paul阱的开发已导致MCA的分辨更好的PE光谱。低温Paul阱与PE成像耦合的最新进展已允许获得由ESI产生的单电荷阴离子的高分辨率PE光谱。特别地,对偶极子结合的激发态的观察使得进行振动自分离光谱和共振PES成为可能,与传统的PES相比,其产生的偶极子自由基的振动光谱信息要丰富得多。 (C)2015 AIP Publishing LLC。

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