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Competition between In-Plane vs Above-Plane Configurations of Water with Aromatic Molecules: Non-Covalent Interactions in 1,4-Naphthoquinone-(H<sub>2</sub>O)<sub>1–3</sub>Complexes

Shefali Baweja, Sanjana Panchagnula, M. Eugenia Sanz, Luca Evangelisti, Cristóbal Pérez, Channing West, Brooks H. Pate

2022The Journal of Physical Chemistry Letters17 citationsDOIOpen Access PDF

Abstract

Non-covalent interactions between aromatic molecules and water are fundamental in many chemical and biological processes, and their accurate description is essential to understand molecular relative configurations. Here we present the rotational spectroscopy study of the water complexes of the polycyclic aromatic hydrocarbon 1,4-naphthoquinone (1,4-NQ). In 1,4-NQ-(H2O)1,2, water molecules bind through O–H···O and C–H···O hydrogen bonds and are located on the plane of 1,4-NQ. For 1,4-NQ-(H2O)3, in-plane and above-plane water configurations are observed exhibiting O–H···O, C–H···O, and lone pair···π-hole interactions. The observation of different water arrangements for 1,4-NQ-(H2O)3 allows benchmarking theoretical methods and shows that they have great difficulty in predicting energy orderings due to the strong competition of C–H···O binding with π and π-hole interactions. This study provides important insight into water interactions with aromatic systems and the challenges in their modeling.

Topics & Concepts

MoleculeHydrogen bondCovalent bondChemistryNaphthoquinoneNon-covalent interactionsPlane (geometry)Chemical physicsCrystallographyCompetition (biology)Computational chemistryGeometryOrganic chemistryMathematicsEcologyBiologyMolecular Spectroscopy and StructureAdvanced Chemical Physics StudiesAtmospheric Ozone and Climate
Competition between In-Plane vs Above-Plane Configurations of Water with Aromatic Molecules: Non-Covalent Interactions in 1,4-Naphthoquinone-(H<sub>2</sub>O)<sub>1–3</sub>Complexes | Litcius