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Structure and Conformation of Novel BODIPY Ugi Adducts

Two novel BODIPY‐Ugi (boron dipyrromethene) adducts exhibit peculiar room temperature (T=20 °C) H‐1 NMR spectra in that several protons located at the aromatic aniline‐type ring are lost in the baseline. This observation revealed the existence of a dynamic conformational process where rotation aroun...

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Autores principales: Arroyo‐Córdoba, Ismael Javier, Gamboa‐Velázquez, Gonzalo, Avila‐Ortiz, Claudia Gabriela, Leyva‐Ramírez, Marco A., Cortez‐Picasso, María Teresa, García‐Revilla, Marco A., Ramírez‐Ornelas, Diana E., Peña‐Cabrera, Eduardo, Juaristi, Eusebio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596608/
https://www.ncbi.nlm.nih.gov/pubmed/36284210
http://dx.doi.org/10.1002/open.202200197
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author Arroyo‐Córdoba, Ismael Javier
Gamboa‐Velázquez, Gonzalo
Avila‐Ortiz, Claudia Gabriela
Leyva‐Ramírez, Marco A.
Cortez‐Picasso, María Teresa
García‐Revilla, Marco A.
Ramírez‐Ornelas, Diana E.
Peña‐Cabrera, Eduardo
Juaristi, Eusebio
author_facet Arroyo‐Córdoba, Ismael Javier
Gamboa‐Velázquez, Gonzalo
Avila‐Ortiz, Claudia Gabriela
Leyva‐Ramírez, Marco A.
Cortez‐Picasso, María Teresa
García‐Revilla, Marco A.
Ramírez‐Ornelas, Diana E.
Peña‐Cabrera, Eduardo
Juaristi, Eusebio
author_sort Arroyo‐Córdoba, Ismael Javier
collection PubMed
description Two novel BODIPY‐Ugi (boron dipyrromethene) adducts exhibit peculiar room temperature (T=20 °C) H‐1 NMR spectra in that several protons located at the aromatic aniline‐type ring are lost in the baseline. This observation revealed the existence of a dynamic conformational process where rotation around the C−N bond is hindered. Variable‐temperature H‐1 and C‐13 NMR spectroscopic analysis confirmed this conclusion; that is, low‐temperature spectra show distinct signals for all four aromatic protons below coalescence, whereas average signals are recorded above coalescence (T=+120 °C). Particularly interesting was the rather large difference in chemical shifts for the ortho protons below coalescence, Δδ=1.45 ppm, which was explained based on DFT computational analysis. Indeed, the calculated lowest‐energy gas‐phase conformation of the BODIPY Ugi adducts locates one half of the aniline‐type ring in the shielding anisotropic cone of the bridge phenyl ring in the BODIPY segment. This is in contrast to the solid‐state conformation established by X‐ray diffraction analysis that shows a nearly parallel arrangement of the aromatic rings, probably induced by crystal packing forces.
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spelling pubmed-95966082022-10-27 Structure and Conformation of Novel BODIPY Ugi Adducts Arroyo‐Córdoba, Ismael Javier Gamboa‐Velázquez, Gonzalo Avila‐Ortiz, Claudia Gabriela Leyva‐Ramírez, Marco A. Cortez‐Picasso, María Teresa García‐Revilla, Marco A. Ramírez‐Ornelas, Diana E. Peña‐Cabrera, Eduardo Juaristi, Eusebio ChemistryOpen Research Articles Two novel BODIPY‐Ugi (boron dipyrromethene) adducts exhibit peculiar room temperature (T=20 °C) H‐1 NMR spectra in that several protons located at the aromatic aniline‐type ring are lost in the baseline. This observation revealed the existence of a dynamic conformational process where rotation around the C−N bond is hindered. Variable‐temperature H‐1 and C‐13 NMR spectroscopic analysis confirmed this conclusion; that is, low‐temperature spectra show distinct signals for all four aromatic protons below coalescence, whereas average signals are recorded above coalescence (T=+120 °C). Particularly interesting was the rather large difference in chemical shifts for the ortho protons below coalescence, Δδ=1.45 ppm, which was explained based on DFT computational analysis. Indeed, the calculated lowest‐energy gas‐phase conformation of the BODIPY Ugi adducts locates one half of the aniline‐type ring in the shielding anisotropic cone of the bridge phenyl ring in the BODIPY segment. This is in contrast to the solid‐state conformation established by X‐ray diffraction analysis that shows a nearly parallel arrangement of the aromatic rings, probably induced by crystal packing forces. John Wiley and Sons Inc. 2022-10-25 /pmc/articles/PMC9596608/ /pubmed/36284210 http://dx.doi.org/10.1002/open.202200197 Text en © 2022 The Authors. Published by Wiley-VCH GmbH https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Arroyo‐Córdoba, Ismael Javier
Gamboa‐Velázquez, Gonzalo
Avila‐Ortiz, Claudia Gabriela
Leyva‐Ramírez, Marco A.
Cortez‐Picasso, María Teresa
García‐Revilla, Marco A.
Ramírez‐Ornelas, Diana E.
Peña‐Cabrera, Eduardo
Juaristi, Eusebio
Structure and Conformation of Novel BODIPY Ugi Adducts
title Structure and Conformation of Novel BODIPY Ugi Adducts
title_full Structure and Conformation of Novel BODIPY Ugi Adducts
title_fullStr Structure and Conformation of Novel BODIPY Ugi Adducts
title_full_unstemmed Structure and Conformation of Novel BODIPY Ugi Adducts
title_short Structure and Conformation of Novel BODIPY Ugi Adducts
title_sort structure and conformation of novel bodipy ugi adducts
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596608/
https://www.ncbi.nlm.nih.gov/pubmed/36284210
http://dx.doi.org/10.1002/open.202200197
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