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The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond

The hydrogen bond enhanced halogen bond (HBeXB) has recently been used to effectively improve anion binding, organocatalysis, and protein structure/function. In this study, we present the first systematic investigation of substituent effects in the HBeXB. NMR analysis confirmed intramolecular HBing...

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Autores principales: Sun, Jiyu, Decato, Daniel A., Bryantsev, Vyacheslav S., John, Eric A., Berryman, Orion B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10445465/
https://www.ncbi.nlm.nih.gov/pubmed/37621436
http://dx.doi.org/10.1039/d3sc02348f
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author Sun, Jiyu
Decato, Daniel A.
Bryantsev, Vyacheslav S.
John, Eric A.
Berryman, Orion B.
author_facet Sun, Jiyu
Decato, Daniel A.
Bryantsev, Vyacheslav S.
John, Eric A.
Berryman, Orion B.
author_sort Sun, Jiyu
collection PubMed
description The hydrogen bond enhanced halogen bond (HBeXB) has recently been used to effectively improve anion binding, organocatalysis, and protein structure/function. In this study, we present the first systematic investigation of substituent effects in the HBeXB. NMR analysis confirmed intramolecular HBing between the amine and the electron-rich belt of the XB donor (N–H⋯I). Gas-phase density functional theory studies showed that the influence of HBing on the halogen atom is more sensitive to substitution on the HB donor ring (R(1)). The NMR studies revealed that the intramolecular HBing had a significant impact on receptor performance, resulting in a 50-fold improvement. Additionally, linear free energy relationship (LFER) analysis was employed for the first time to study the substituent effect in the HBeXB. The results showed that substituents on the XB donor ring (R(2)) had a competing effect where electron donating groups strengthened the HB and weakened the XB. Therefore, selecting an appropriate substituent on the adjacent HB donor ring (R(1)) could be an alternative and effective way to enhance an electron-rich XB donor. X-ray crystallographic analysis demonstrated that intramolecular HBing plays an important role in the receptor adopting the bidentate conformation. Taken together, the findings imply that modifying distal substituents that affect neighboring noncovalent interactions can have a similar impact to conventional para substitution substituent effects.
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spelling pubmed-104454652023-08-24 The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond Sun, Jiyu Decato, Daniel A. Bryantsev, Vyacheslav S. John, Eric A. Berryman, Orion B. Chem Sci Chemistry The hydrogen bond enhanced halogen bond (HBeXB) has recently been used to effectively improve anion binding, organocatalysis, and protein structure/function. In this study, we present the first systematic investigation of substituent effects in the HBeXB. NMR analysis confirmed intramolecular HBing between the amine and the electron-rich belt of the XB donor (N–H⋯I). Gas-phase density functional theory studies showed that the influence of HBing on the halogen atom is more sensitive to substitution on the HB donor ring (R(1)). The NMR studies revealed that the intramolecular HBing had a significant impact on receptor performance, resulting in a 50-fold improvement. Additionally, linear free energy relationship (LFER) analysis was employed for the first time to study the substituent effect in the HBeXB. The results showed that substituents on the XB donor ring (R(2)) had a competing effect where electron donating groups strengthened the HB and weakened the XB. Therefore, selecting an appropriate substituent on the adjacent HB donor ring (R(1)) could be an alternative and effective way to enhance an electron-rich XB donor. X-ray crystallographic analysis demonstrated that intramolecular HBing plays an important role in the receptor adopting the bidentate conformation. Taken together, the findings imply that modifying distal substituents that affect neighboring noncovalent interactions can have a similar impact to conventional para substitution substituent effects. The Royal Society of Chemistry 2023-07-21 /pmc/articles/PMC10445465/ /pubmed/37621436 http://dx.doi.org/10.1039/d3sc02348f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sun, Jiyu
Decato, Daniel A.
Bryantsev, Vyacheslav S.
John, Eric A.
Berryman, Orion B.
The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
title The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
title_full The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
title_fullStr The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
title_full_unstemmed The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
title_short The interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
title_sort interplay between hydrogen and halogen bonding: substituent effects and their role in the hydrogen bond enhanced halogen bond
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10445465/
https://www.ncbi.nlm.nih.gov/pubmed/37621436
http://dx.doi.org/10.1039/d3sc02348f
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