The Spectroscopic Features of Ionized Water Medium: Theoretical Characterization and Implication Using (H2O)n+, n=3-4, Cluster Model
Author:
Publisher
Wiley
Subject
General Chemistry
Reference129 articles.
1. Role of Water in Electron-Initiated Processes and Radical Chemistry: Issues and Scientific Advances
2. Excitation-energy dependence of the mechanism for two-photon ionization of liquid H2O and D2O from 8.3to12.4eV
3. Broadband Spectral Probing Revealing Ultrafast Photochemical Branching after Ultraviolet Excitation of the Aqueous Phenolate Anion
4. Hydrogen/deuterium isotope effects in water radiolysis. 2. Dissociation of electronically excited water
5. Dissociation patterns of (H2O)n+ cluster ions, for n=2–6
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1. Infrared spectroscopy of [H2O–Xn]+(n= 1–3, X = N2, CO2, CO, and N2O) radical cation clusters: competition between hydrogen bond and hemibond formation of the water radical cation;Physical Chemistry Chemical Physics;2023
2. Infrared Spectroscopy and Anharmonic Vibrational Analysis of (H2O–Krn)+ (n = 1–3): Hemibond Formation of the Water Radical Cation;The Journal of Physical Chemistry Letters;2021-08-16
3. Ab initio study of cationic water cluster (H 2 O) 9 + via particle swarm optimization algorithm;Computational and Theoretical Chemistry;2017-11
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