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卡莎规则与库普曼斯关联式在多阴离子中电子隧穿通过排斥性库仑势垒的应用

Kasha's Rule and Koopmans' Correlations for Electron Tunnelling through Repulsive Coulomb Barriers in a Polyanion.

作者信息

Gibbard Jemma A, 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 Lett. 2022 Aug 25;13(33):7797-7801. doi: 10.1021/acs.jpclett.2c02145. Epub 2022 Aug 16.

Abstract

The long-range electronic structure of polyanions is defined by the repulsive Coulomb barrier (RCB). Excited states can decay by resonant electron tunnelling through RCBs, but such decay has not been observed for electronically excited states other than the first excited state, suggesting a Kasha-type rule for resonant electron tunnelling. Using action spectroscopy, photoelectron imaging, and computational chemistry, we show that the fluorescein dianion, Fl, partially decays through electron tunnelling from the S excited state, thus demonstrating anti-Kasha behavior, and that resonant electron tunnelling adheres to Koopmans' correlations, thus disentangling different channels.

摘要

聚阴离子的长程电子结构由排斥性库仑势垒(RCB)定义。激发态可通过共振电子隧穿RCB而衰变,但除第一激发态外,尚未观察到其他电子激发态的这种衰变,这表明存在共振电子隧穿的卡莎型规则。通过采用作用光谱、光电子成像和计算化学方法,我们表明荧光素二价阴离子(Fl)部分通过从S激发态的电子隧穿而衰变,从而证明了反卡莎行为,并且共振电子隧穿遵循库普曼斯相关性,从而厘清了不同的通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b508/9421885/3d327d71bf90/jz2c02145_0001.jpg

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