Electron dynamics mediate the water-carbon π bond

Fuente: arXiv
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Hauptverfasser: LeMessurier, N., Katz, E., Pant, R., Ganley, S., Salzmann, H., McCaslin, L. M., Weber, J. M., Eaves, J. D.
Format: Preprint
Veröffentlicht: 2026
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author LeMessurier, N.
Katz, E.
Pant, R.
Ganley, S.
Salzmann, H.
McCaslin, L. M.
Weber, J. M.
Eaves, J. D.
author_facet LeMessurier, N.
Katz, E.
Pant, R.
Ganley, S.
Salzmann, H.
McCaslin, L. M.
Weber, J. M.
Eaves, J. D.
contents The intermolecular interaction between a water molecule and the electrons in aromatic π systems--the water-π bond--lies at the heart of many chemical processes, yet its properties remain challenging to measure experimentally and model computationally. Infrared spectroscopy of pyrene anions hydrated by a single water molecule reveals vibrational and electronic motions that are often hidden in condensed phase measurements. Results from new machine-learning approaches to potentials and dipole moments show that the electron dynamics of the aromatic π cloud quench signals from some of water's vibrations and amplify others. The observed interplay between electronic and vibrational motions has general implications for modeling intermolecular interactions between water and aromatic systems in clusters, solutions, and at interfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2604_03464
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Electron dynamics mediate the water-carbon π bond
LeMessurier, N.
Katz, E.
Pant, R.
Ganley, S.
Salzmann, H.
McCaslin, L. M.
Weber, J. M.
Eaves, J. D.
Chemical Physics
Statistical Mechanics
Computational Physics
The intermolecular interaction between a water molecule and the electrons in aromatic π systems--the water-π bond--lies at the heart of many chemical processes, yet its properties remain challenging to measure experimentally and model computationally. Infrared spectroscopy of pyrene anions hydrated by a single water molecule reveals vibrational and electronic motions that are often hidden in condensed phase measurements. Results from new machine-learning approaches to potentials and dipole moments show that the electron dynamics of the aromatic π cloud quench signals from some of water's vibrations and amplify others. The observed interplay between electronic and vibrational motions has general implications for modeling intermolecular interactions between water and aromatic systems in clusters, solutions, and at interfaces.
title Electron dynamics mediate the water-carbon π bond
topic Chemical Physics
Statistical Mechanics
Computational Physics
url https://arxiv.org/abs/2604.03464