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甲醇单光子双电离中三重态的缺失。

Absence of Triplets in Single-Photon Double Ionization of Methanol.

作者信息

Gope Krishnendu, Livshits Ester, Bittner Dror M, Baer Roi, Strasser Daniel

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

Fritz Haber Research Center for Molecular Dynamics and Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

J Phys Chem Lett. 2020 Oct 1;11(19):8108-8113. doi: 10.1021/acs.jpclett.0c02445. Epub 2020 Sep 15.

Abstract

Despite the abundance of data concerning single-photon double ionization of methanol, the spin state of the emitted electron pair has never been determined. Here we present the first evidence that identifies the emitted electron pair spin as overwhelmingly singlet when the dication forms in low-energy configurations. The experimental data show that while the yield of the CHO + H Coulomb explosion channel is abundant, the metastable methanol dication is largely absent. According to high-level ab initio simulations, these facts indicate that photoionization promptly forms singlet dication states, where they quickly decompose through various channels, with significant H yields on the low-lying states. In contrast, if we assume that the initial dication is formed in one of the low-lying triplet states, the ab initio simulations exhibit a metastable dication, contradicting the experimental findings. Comparing the average simulated branching ratios with the experimental data suggests a >3 order of magnitude enhancement of the singlet:triplet ratio compared with their respective 1:3 multiplicities.

摘要

尽管有大量关于甲醇单光子双电离的数据,但发射电子对的自旋态从未被确定。在此,我们首次证明,当双阳离子以低能构型形成时,发射的电子对自旋绝大多数为单重态。实验数据表明,虽然CHO + H库仑爆炸通道的产率很高,但亚稳甲醇双阳离子基本不存在。根据高水平的从头算模拟,这些事实表明,光电离迅速形成单重态双阳离子态,它们通过各种通道迅速分解,在低能态上有显著的H产率。相比之下,如果我们假设初始双阳离子是在低能三重态之一中形成的,那么从头算模拟会显示出一个亚稳双阳离子,这与实验结果相矛盾。将模拟的平均分支比与实验数据进行比较表明,与各自1:3的多重度相比,单重态:三重态的比例提高了3个数量级以上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e6b/7595352/e321e4d1328f/jz0c02445_0001.jpg

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