The 2-naphthol-water2 cluster: Two competing types of hydrogen-bonding arrangements
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2952271
Reference30 articles.
1. Phenol-water1⩽n⩽3 revisited: An ab initio study on the photophysics of these clusters at the level of coupled cluster response theory
2. Conformational preference of substituted naphthalenes. 2—proton-proton coupling constants of hydroxy derivatives of naphthalene
3. Evidence for two rotational isomers of 1-naphthol and 2-naphthol from their gas-phase electronic absorption spectra
4. High resolutionS1←S0fluoescence excitation spectra of the 1‐ and 2‐hydroxynaphthalenes. Distinguishing thecisandtransrotamers
5. IR induced cis↔trans isomerization of 2-naphthol: Catalytic role of hydrogen-bond in the photoinduced isomerization
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1. Structural study of 1- and 2-naphthol: new insights into the non-covalent H–H interaction in cis-1-naphthol;Physical Chemistry Chemical Physics;2022
2. Microhydration of 2-Naphthol at Ground, First Excited Triplet, and First Excited Singlet States: A Case Study on Photo Acids;The Journal of Physical Chemistry A;2018-01-23
3. Photochemistry of 1- and 2-Naphthols and Their Water Clusters: The Role of1ππ*(La) Mediated Hydrogen Transfer to Carbon Atoms;Chemistry - A European Journal;2017-05-19
4. Paracyclophanes as Model Compounds for Strongly Interacting π-Systems, Part 3: Influence of the Substitution Pattern on Photoabsorption Properties;The Journal of Physical Chemistry A;2011-03-29
5. Flickering dipoles in the gas phase: Structures, internal dynamics, and dipole moments of β-naphthol-H2O in its ground and excited electronic states;The Journal of Chemical Physics;2011-03-21
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