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呫吨的反转运动及其氧化产物呫吨酮的气相转动光谱检测

Inversion Motion of Xanthene and Detection of Its Oxidation Product Xanthone from Gas-Phase Rotational Spectroscopy.

作者信息

Bermúdez Celina, Goubet Manuel, Neeman Elias M

机构信息

Departamento de Química Física y Química Inorgánica, Facultad de Ciencias-I.U. CINQUIMA, Universidad de Valladolid, Paseo de Belén 7, 47011 Valladolid, Spain.

University of Lille, CNRS, UMR 8523-PhLAM-Physique des Lasers Atomes et Molécules, F-59000 Lille, France.

出版信息

Molecules. 2025 Jun 29;30(13):2801. doi: 10.3390/molecules30132801.

Abstract

The rotational spectra of xanthene and its oxidation product xanthone were investigated by combining quantum chemical calculations with Fourier transform microwave spectroscopy in a jet-cooled environment. Xanthone was unexpectedly generated in the experiment when water was present in the reservoir of xanthene leading to the total disappearance of xanthene after few hours. Structurally, xanthone shows a near planar disposition, whereas xanthene exhibits a non-planar geometry with both benzene rings twisted out of the molecular plane. This geometry enables an inversion motion between two equivalent conformers, giving rise to a splitting in the ground vibrational state. A two-state analysis of the vibration-rotation interaction for the v=0 and v=1 states gives an energy separation between these states (inversion splitting) of ΔE01=4689.7095(10)MHz. This large-amplitude motion leads to vibration-rotation coupling of energy levels. A symmetric double-minimum inversion potential function was determined, resulting in a barrier of about 45 cm in good agreement with that obtained by DFT quantum chemical calculations.

摘要

通过在喷射冷却环境中将量子化学计算与傅里叶变换微波光谱相结合,研究了呫吨及其氧化产物氧杂蒽的转动光谱。当呫吨储液器中存在水时,实验中意外生成了氧杂蒽,导致几小时后呫吨完全消失。在结构上,氧杂蒽呈现出近乎平面的构型,而呫吨则呈现出非平面几何结构,两个苯环都扭曲出分子平面。这种几何结构使得两个等效构象体之间能够发生反转运动,从而在基振动态中产生分裂。对v = 0和v = 1态的振动 - 转动相互作用进行的双态分析给出了这些态之间的能量分离(反转分裂),ΔE01 = 4689.7095(10)MHz。这种大幅度运动导致了能级的振动 - 转动耦合。确定了一个对称的双阱反转势函数,得到的势垒约为45 cm,与通过密度泛函理论(DFT)量子化学计算得到的结果吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/078b/12251198/51f6d5ed791a/molecules-30-02801-g001.jpg

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