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通过频率分辨光电子成像探测对苯醌的阴离子共振

Anion resonances of para-benzoquinone probed by frequency-resolved photoelectron imaging.

作者信息

West Christopher W, Bull James N, Antonkov Erkki, Verlet Jan R R

机构信息

Department of Chemistry, Durham University , Durham, DH1 3LE, United Kingdom.

出版信息

J Phys Chem A. 2014 Dec 4;118(48):11346-54. doi: 10.1021/jp509102p. Epub 2014 Oct 24.

Abstract

The resonant attachment of a free electron to a closed shell neutral molecule and the interplay between the following electron detachment and electronic relaxation channels represents a fundamental but common process throughout chemical and biochemical systems. The new methodology of anion frequency-resolved photoelectron imaging is detailed and used to map out molecular excited state dynamics of gas-phase para-benzoquinone, which is the electron accepting moiety in many biological electron-transfer chains. Three-dimensional spectra of excitation energy, electron kinetic energy, and electron ejection anisotropy reveal clear fingerprints of excited and intermediate state dynamics. The results show that many of the excited states are strongly coupled, providing a route to forming the ground state radical anion, despite the fact that the electron is formally unbound in the excited states. The relation of our method to electron impact attachment studies and the key advantages, including the extension to time-resolved dynamics and to larger molecular systems, are discussed.

摘要

自由电子与闭壳层中性分子的共振附着以及随后的电子脱离和电子弛豫通道之间的相互作用,是贯穿化学和生物化学系统的一个基本但常见的过程。详细介绍了阴离子频率分辨光电子成像的新方法,并将其用于绘制气相对苯醌的分子激发态动力学图谱,对苯醌是许多生物电子传递链中的电子接受部分。激发能、电子动能和电子出射各向异性的三维光谱揭示了激发态和中间态动力学的清晰特征。结果表明,尽管电子在激发态中形式上是未束缚的,但许多激发态之间存在强烈耦合,这为形成基态自由基阴离子提供了一条途径。讨论了我们的方法与电子碰撞附着研究的关系以及关键优势,包括对时间分辨动力学和更大分子系统的扩展。

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