Cargando…

Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase

In this work, earlier studies reporting α‐H(2)CO(3) are revised. The cryo‐technique pioneered by Hage, Hallbrucker, and Mayer (HHM) is adapted to supposedly prepare carbonic acid from KHCO(3). In methanolic solution, methylation of the salt is found, which upon acidification transforms to the monome...

Descripción completa

Detalles Bibliográficos
Autores principales: Köck, Eva‐Maria, Bernard, Jürgen, Podewitz, Maren, Dinu, Dennis F., Huber, Roland G., Liedl, Klaus R., Grothe, Hinrich, Bertel, Erminald, Schlögl, Robert, Loerting, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6972543/
https://www.ncbi.nlm.nih.gov/pubmed/31593601
http://dx.doi.org/10.1002/chem.201904142
_version_ 1783489854672207872
author Köck, Eva‐Maria
Bernard, Jürgen
Podewitz, Maren
Dinu, Dennis F.
Huber, Roland G.
Liedl, Klaus R.
Grothe, Hinrich
Bertel, Erminald
Schlögl, Robert
Loerting, Thomas
author_facet Köck, Eva‐Maria
Bernard, Jürgen
Podewitz, Maren
Dinu, Dennis F.
Huber, Roland G.
Liedl, Klaus R.
Grothe, Hinrich
Bertel, Erminald
Schlögl, Robert
Loerting, Thomas
author_sort Köck, Eva‐Maria
collection PubMed
description In this work, earlier studies reporting α‐H(2)CO(3) are revised. The cryo‐technique pioneered by Hage, Hallbrucker, and Mayer (HHM) is adapted to supposedly prepare carbonic acid from KHCO(3). In methanolic solution, methylation of the salt is found, which upon acidification transforms to the monomethyl ester of carbonic acid (CAME, HO‐CO‐OCH(3)). Infrared spectroscopy data both of the solid at 210 K and of the evaporated molecules trapped and isolated in argon matrix at 10 K are presented. The interpretation of the observed bands on the basis of carbonic acid [as suggested originally by HHM in their publications from 1993–1997 and taken over by Winkel et al., J. Am. Chem. Soc. 2007 and Bernard et al., Angew. Chem. Int. Ed. 2011] is inferior compared with the interpretation on the basis of CAME. The assignment relies on isotope substitution experiments, including deuteration of the OH‐ and CH(3)‐ groups as well as (12)C and (13)C isotope exchange and on variation of the solvents in both preparation steps. The interpretation of the single molecule spectroscopy experiments is aided by a comprehensive calculation of high‐level ab initio frequencies for gas‐phase molecules and clusters in the harmonic approximation. This analysis provides evidence for the existence of not only single CAME molecules but also CAME dimers and water complexes in the argon matrix. Furthermore, different conformational CAME isomers are identified, where conformational isomerism is triggered in experiments through UV irradiation. In contrast to earlier studies, this analysis allows explanation of almost every single band of the complex spectra in the range between 4000 and 600 cm(−1).
format Online
Article
Text
id pubmed-6972543
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-69725432020-01-27 Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase Köck, Eva‐Maria Bernard, Jürgen Podewitz, Maren Dinu, Dennis F. Huber, Roland G. Liedl, Klaus R. Grothe, Hinrich Bertel, Erminald Schlögl, Robert Loerting, Thomas Chemistry Full Papers In this work, earlier studies reporting α‐H(2)CO(3) are revised. The cryo‐technique pioneered by Hage, Hallbrucker, and Mayer (HHM) is adapted to supposedly prepare carbonic acid from KHCO(3). In methanolic solution, methylation of the salt is found, which upon acidification transforms to the monomethyl ester of carbonic acid (CAME, HO‐CO‐OCH(3)). Infrared spectroscopy data both of the solid at 210 K and of the evaporated molecules trapped and isolated in argon matrix at 10 K are presented. The interpretation of the observed bands on the basis of carbonic acid [as suggested originally by HHM in their publications from 1993–1997 and taken over by Winkel et al., J. Am. Chem. Soc. 2007 and Bernard et al., Angew. Chem. Int. Ed. 2011] is inferior compared with the interpretation on the basis of CAME. The assignment relies on isotope substitution experiments, including deuteration of the OH‐ and CH(3)‐ groups as well as (12)C and (13)C isotope exchange and on variation of the solvents in both preparation steps. The interpretation of the single molecule spectroscopy experiments is aided by a comprehensive calculation of high‐level ab initio frequencies for gas‐phase molecules and clusters in the harmonic approximation. This analysis provides evidence for the existence of not only single CAME molecules but also CAME dimers and water complexes in the argon matrix. Furthermore, different conformational CAME isomers are identified, where conformational isomerism is triggered in experiments through UV irradiation. In contrast to earlier studies, this analysis allows explanation of almost every single band of the complex spectra in the range between 4000 and 600 cm(−1). John Wiley and Sons Inc. 2019-11-26 2020-01-02 /pmc/articles/PMC6972543/ /pubmed/31593601 http://dx.doi.org/10.1002/chem.201904142 Text en © 2019 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Köck, Eva‐Maria
Bernard, Jürgen
Podewitz, Maren
Dinu, Dennis F.
Huber, Roland G.
Liedl, Klaus R.
Grothe, Hinrich
Bertel, Erminald
Schlögl, Robert
Loerting, Thomas
Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase
title Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase
title_full Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase
title_fullStr Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase
title_full_unstemmed Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase
title_short Alpha‐Carbonic Acid Revisited: Carbonic Acid Monomethyl Ester as a Solid and its Conformational Isomerism in the Gas Phase
title_sort alpha‐carbonic acid revisited: carbonic acid monomethyl ester as a solid and its conformational isomerism in the gas phase
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6972543/
https://www.ncbi.nlm.nih.gov/pubmed/31593601
http://dx.doi.org/10.1002/chem.201904142
work_keys_str_mv AT kockevamaria alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT bernardjurgen alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT podewitzmaren alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT dinudennisf alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT huberrolandg alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT liedlklausr alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT grothehinrich alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT bertelerminald alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT schloglrobert alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase
AT loertingthomas alphacarbonicacidrevisitedcarbonicacidmonomethylesterasasolidanditsconformationalisomerisminthegasphase