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A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS

Electrospray ionization (ESI) combined with ion mobility spectrometry (IMS) and mass spectrometry (MS) techniques is used to examine the Biginelli reaction in an ensemble of ions generated from droplets. We find evidence for rapid dihydropyrimidinone formation from condensation of ethyl acetoacetate...

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Autores principales: Sahota, Navneet, AbuSalim, Deyaa I., Wang, Melinda L., Brown, Christopher J., Zhang, Zhicaho, El-Baba, Tarick J., Cook, Silas P., Clemmer, David E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6509997/
https://www.ncbi.nlm.nih.gov/pubmed/31160956
http://dx.doi.org/10.1039/c9sc00704k
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author Sahota, Navneet
AbuSalim, Deyaa I.
Wang, Melinda L.
Brown, Christopher J.
Zhang, Zhicaho
El-Baba, Tarick J.
Cook, Silas P.
Clemmer, David E.
author_facet Sahota, Navneet
AbuSalim, Deyaa I.
Wang, Melinda L.
Brown, Christopher J.
Zhang, Zhicaho
El-Baba, Tarick J.
Cook, Silas P.
Clemmer, David E.
author_sort Sahota, Navneet
collection PubMed
description Electrospray ionization (ESI) combined with ion mobility spectrometry (IMS) and mass spectrometry (MS) techniques is used to examine the Biginelli reaction in an ensemble of ions generated from droplets. We find evidence for rapid dihydropyrimidinone formation from condensation of ethyl acetoacetate, benzaldehyde, and urea on the very short timescales associated with the electrospray process (∼10 μs to ∼1.0 ms). Control bulk-solution reactions show no product formation even after several days. This implies that the in-droplet reaction rate is enhanced by an astonishing factor. Examination of the reaction conditions and characterization of the intermediates en route to product shows evidence for variations in the reaction mechanism. IMS separation shows that the Knoevenagel condensation intermediate from benzaldehyde and ethyl acetoacetate exists as both the cis- and trans-isomer, in a ∼5 to 1 ratio. We suggest that the dramatic acceleration arises because of increased reagent confinement as electrosprayed droplets shrink. The ability of IMS-MS to resolve intermediates (including isomers) provides a new means of understanding reaction pathways.
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spelling pubmed-65099972019-06-03 A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS Sahota, Navneet AbuSalim, Deyaa I. Wang, Melinda L. Brown, Christopher J. Zhang, Zhicaho El-Baba, Tarick J. Cook, Silas P. Clemmer, David E. Chem Sci Chemistry Electrospray ionization (ESI) combined with ion mobility spectrometry (IMS) and mass spectrometry (MS) techniques is used to examine the Biginelli reaction in an ensemble of ions generated from droplets. We find evidence for rapid dihydropyrimidinone formation from condensation of ethyl acetoacetate, benzaldehyde, and urea on the very short timescales associated with the electrospray process (∼10 μs to ∼1.0 ms). Control bulk-solution reactions show no product formation even after several days. This implies that the in-droplet reaction rate is enhanced by an astonishing factor. Examination of the reaction conditions and characterization of the intermediates en route to product shows evidence for variations in the reaction mechanism. IMS separation shows that the Knoevenagel condensation intermediate from benzaldehyde and ethyl acetoacetate exists as both the cis- and trans-isomer, in a ∼5 to 1 ratio. We suggest that the dramatic acceleration arises because of increased reagent confinement as electrosprayed droplets shrink. The ability of IMS-MS to resolve intermediates (including isomers) provides a new means of understanding reaction pathways. Royal Society of Chemistry 2019-03-28 /pmc/articles/PMC6509997/ /pubmed/31160956 http://dx.doi.org/10.1039/c9sc00704k Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Sahota, Navneet
AbuSalim, Deyaa I.
Wang, Melinda L.
Brown, Christopher J.
Zhang, Zhicaho
El-Baba, Tarick J.
Cook, Silas P.
Clemmer, David E.
A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS
title A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS
title_full A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS
title_fullStr A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS
title_full_unstemmed A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS
title_short A microdroplet-accelerated Biginelli reaction: mechanisms and separation of isomers using IMS-MS
title_sort microdroplet-accelerated biginelli reaction: mechanisms and separation of isomers using ims-ms
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6509997/
https://www.ncbi.nlm.nih.gov/pubmed/31160956
http://dx.doi.org/10.1039/c9sc00704k
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