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Solvation and evolution dynamics of an excess electron in supercritical CO2
Zhiping Wang1, Jinxiang Liu, Meng Zhang
1The Center of Molecular Modeling & Simulation, Institute of Theoretical Chemistry, Shandong University, Jinan, 250100, People's Republic of China.
Abstract:
We present an ab initio molecular dynamics simulation of the dynamics of an excess electron solvated in supercritical CO2. The excess electron can exist in three types of states: CO2-core localized, dual-core localized, and diffuse states. All these states undergo continuous state conversions via a combination of long lasting breathing oscillations and core switching, as also characterized by highly cooperative oscillations of the excess electron volume and vertical detachment energy. All of these oscillations exhibit a strong correlation with the electron-impacted bending vibration of the core CO2, and the core-switching is controlled by thermal fluctuations.
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