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Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes

Catechol is an oxygenated aromatic volatile organic compound and a biogenic precursor of secondary organic aerosols. Monitoring this compound in the gas phase is desirable due to its appreciable reactivity with tropospheric ozone. From a molecular point of view, this molecule is attractive since the...

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Autores principales: Bruckhuisen, Jonas, Dhont, Guillaume, Roucou, Anthony, Jabri, Atef, Bayoudh, Hamdi, Tran, Thi Thanh, Goubet, Manuel, Martin-Drumel, Marie-Aline, Cuisset, Arnaud
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8232127/
https://www.ncbi.nlm.nih.gov/pubmed/34203730
http://dx.doi.org/10.3390/molecules26123645
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author Bruckhuisen, Jonas
Dhont, Guillaume
Roucou, Anthony
Jabri, Atef
Bayoudh, Hamdi
Tran, Thi Thanh
Goubet, Manuel
Martin-Drumel, Marie-Aline
Cuisset, Arnaud
author_facet Bruckhuisen, Jonas
Dhont, Guillaume
Roucou, Anthony
Jabri, Atef
Bayoudh, Hamdi
Tran, Thi Thanh
Goubet, Manuel
Martin-Drumel, Marie-Aline
Cuisset, Arnaud
author_sort Bruckhuisen, Jonas
collection PubMed
description Catechol is an oxygenated aromatic volatile organic compound and a biogenic precursor of secondary organic aerosols. Monitoring this compound in the gas phase is desirable due to its appreciable reactivity with tropospheric ozone. From a molecular point of view, this molecule is attractive since the two adjacent hydroxy groups can interchangeably act as donor and acceptor in an intramolecular hydrogen bonding due to the tunnelling between two symmetrically equivalent structures. Using synchrotron radiation, we recorded a rotationally-resolved Fourier Transform far-infrared (IR) spectrum of the torsional modes of the free and bonded -OH groups forming the intramolecular hydrogen bond. Additionally, the room temperature, pure rotational spectrum was measured in the 70–220 [Formula: see text] frequency range using a millimeter-wave spectrometer. The assignment of these molecular transitions was assisted by anharmonic high-level quantum-chemical calculations. In particular, pure rotational lines belonging to the ground and the four lowest energy, vibrationally excited states were assigned. Splitting due to the tunnelling was resolved for the free -OH torsional state. A global fit combining the far-IR and millimeter-wave data provided the spectroscopic parameters of the low-energy far-IR modes, in particular those characterizing the intramolecular hydrogen bond dynamics.
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spelling pubmed-82321272021-06-26 Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes Bruckhuisen, Jonas Dhont, Guillaume Roucou, Anthony Jabri, Atef Bayoudh, Hamdi Tran, Thi Thanh Goubet, Manuel Martin-Drumel, Marie-Aline Cuisset, Arnaud Molecules Article Catechol is an oxygenated aromatic volatile organic compound and a biogenic precursor of secondary organic aerosols. Monitoring this compound in the gas phase is desirable due to its appreciable reactivity with tropospheric ozone. From a molecular point of view, this molecule is attractive since the two adjacent hydroxy groups can interchangeably act as donor and acceptor in an intramolecular hydrogen bonding due to the tunnelling between two symmetrically equivalent structures. Using synchrotron radiation, we recorded a rotationally-resolved Fourier Transform far-infrared (IR) spectrum of the torsional modes of the free and bonded -OH groups forming the intramolecular hydrogen bond. Additionally, the room temperature, pure rotational spectrum was measured in the 70–220 [Formula: see text] frequency range using a millimeter-wave spectrometer. The assignment of these molecular transitions was assisted by anharmonic high-level quantum-chemical calculations. In particular, pure rotational lines belonging to the ground and the four lowest energy, vibrationally excited states were assigned. Splitting due to the tunnelling was resolved for the free -OH torsional state. A global fit combining the far-IR and millimeter-wave data provided the spectroscopic parameters of the low-energy far-IR modes, in particular those characterizing the intramolecular hydrogen bond dynamics. MDPI 2021-06-15 /pmc/articles/PMC8232127/ /pubmed/34203730 http://dx.doi.org/10.3390/molecules26123645 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bruckhuisen, Jonas
Dhont, Guillaume
Roucou, Anthony
Jabri, Atef
Bayoudh, Hamdi
Tran, Thi Thanh
Goubet, Manuel
Martin-Drumel, Marie-Aline
Cuisset, Arnaud
Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes
title Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes
title_full Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes
title_fullStr Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes
title_full_unstemmed Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes
title_short Intramolecular H-Bond Dynamics of Catechol Investigated by THz High-Resolution Spectroscopy of Its Low-Frequency Modes
title_sort intramolecular h-bond dynamics of catechol investigated by thz high-resolution spectroscopy of its low-frequency modes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8232127/
https://www.ncbi.nlm.nih.gov/pubmed/34203730
http://dx.doi.org/10.3390/molecules26123645
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