Ab initio determination of the ionization potentials of water clusters (H2O)n (n = 2−6)
Javier Segarra‐Martí, Manuela Merchán, Daniel Roca‐Sanjuán
Abstract
Javier Segarra‐Martí, Manuela Merchán, Daniel Roca‐Sanjuán
Abstract
High-level quantum-chemical ab initio coupled-cluster and multiconfigurational perturbation methods have been used to compute the vertical and adiabatic ionization potentials of several water clusters: dimer, trimer, tetramer, pentamer, hexamer book, hexamer ring, hexamer cage, and hexamer prism. The present results establish reference values at a level not reported before for these systems, calibrating different computational strategies and helping to discard less reliable theoretical and experimental data. The systematic study with the increasing size of the water cluster allows obtaining some clues on the structure and reductive properties of liquid water.
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High-level quantum-chemical ab initio coupled-cluster and multiconfigurational perturbation methods have been used to compute the vertical and adiabatic ionization potentials of several water clusters: dimer, trimer, tetramer, pentamer, hexamer book, hexamer ring, hexamer cage, and hexamer prism. The present results establish reference values at a level not reported before for these systems, calibrating different computational strategies and helping to discard less reliable theoretical and experimental data. The systematic study with the increasing size of the water cluster allows obtaining some clues on the structure and reductive properties of liquid water.
Key concepts: Random hexamer, Pentamer, Trimer, Ab initio, Tetramer, Chemistry, Dimer, Cluster (spacecraft)