Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones

Intramolecular hydrogen bonds (IHBs) play a central role in the molecular structure, chemical reactivity and interactions of biologically active molecules. Here, we study the IHBs of seven related o-carbonyl hydroquinones and one structurally-related aromatic lactone, some of which have shown antica...

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Main Authors: Maximiliano Martínez-Cifuentes, Boris E. Weiss-López, Leonardo S. Santos, Ramiro Araya-Maturana
Format: Article
Language:English
Published: MDPI AG 2014-07-01
Series:Molecules
Subjects:
DFT
Online Access:http://www.mdpi.com/1420-3049/19/7/9354
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spelling doaj-a713cb8cc6fa45eda115b5e4678fb8a22020-11-24T22:28:54ZengMDPI AGMolecules1420-30492014-07-011979354936810.3390/molecules19079354molecules19079354Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl HydroquinonesMaximiliano Martínez-Cifuentes0Boris E. Weiss-López1Leonardo S. Santos2Ramiro Araya-Maturana3Laboratorio de Síntesis Asimétrica, Instituto de Química de los Recursos Naturales, Universidad de Talca, Talca, Casilla 747, ChileDepartamento de Química, Facultad de Ciencias, Universidad de Chile, Santiago, Casilla 653, ChileLaboratorio de Síntesis Asimétrica, Instituto de Química de los Recursos Naturales, Universidad de Talca, Talca, Casilla 747, ChileDepartamento de Química Orgánica y Fisicoquímica, Facultad de Ciencias Químicas Y Farmacéuticas, Universidad de Chile, Santiago, Casilla 233, ChileIntramolecular hydrogen bonds (IHBs) play a central role in the molecular structure, chemical reactivity and interactions of biologically active molecules. Here, we study the IHBs of seven related o-carbonyl hydroquinones and one structurally-related aromatic lactone, some of which have shown anticancer and antioxidant activity. Experimental NMR data were correlated with theoretical calculations at the DFT and ab initio levels. Natural bond orbital (NBO) and molecular electrostatic potential (MEP) calculations were used to study the electronic characteristics of these IHB. As expected, our results show that NBO calculations are better than MEP to describe the strength of the IHBs. NBO energies (∆Eij(2)) show that the main contributions to energy stabilization correspond to LPàσ* interactions for IHBs, O1…O2-H2 and the delocalization LPàπ* for O2-C2 = Cα(β). For the O1…O2-H2 interaction, the values of ∆Eij(2) can be attributed to the difference in the overlap ability between orbitals i and j (Fij), instead of the energy difference between them. The large energy for the LP O2àπ* C2 = Cα(β) interaction in the compounds 9-Hydroxy-5-oxo-4,8, 8-trimethyl-l,9(8H)-anthracenecarbolactone (VIII) and 9,10-dihydroxy-4,4-dimethylanthracen-1(4H)-one (VII) (55.49 and 60.70 kcal/mol, respectively) when compared with the remaining molecules (all less than 50 kcal/mol), suggests that the IHBs in VIII and VII are strongly resonance assisted.http://www.mdpi.com/1420-3049/19/7/9354hydroquinonehydrogen bondDFTmolecular electrostatic potentialnatural bond orbital
collection DOAJ
language English
format Article
sources DOAJ
author Maximiliano Martínez-Cifuentes
Boris E. Weiss-López
Leonardo S. Santos
Ramiro Araya-Maturana
spellingShingle Maximiliano Martínez-Cifuentes
Boris E. Weiss-López
Leonardo S. Santos
Ramiro Araya-Maturana
Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones
Molecules
hydroquinone
hydrogen bond
DFT
molecular electrostatic potential
natural bond orbital
author_facet Maximiliano Martínez-Cifuentes
Boris E. Weiss-López
Leonardo S. Santos
Ramiro Araya-Maturana
author_sort Maximiliano Martínez-Cifuentes
title Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones
title_short Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones
title_full Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones
title_fullStr Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones
title_full_unstemmed Intramolecular Hydrogen Bond in Biologically Active o-Carbonyl Hydroquinones
title_sort intramolecular hydrogen bond in biologically active o-carbonyl hydroquinones
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2014-07-01
description Intramolecular hydrogen bonds (IHBs) play a central role in the molecular structure, chemical reactivity and interactions of biologically active molecules. Here, we study the IHBs of seven related o-carbonyl hydroquinones and one structurally-related aromatic lactone, some of which have shown anticancer and antioxidant activity. Experimental NMR data were correlated with theoretical calculations at the DFT and ab initio levels. Natural bond orbital (NBO) and molecular electrostatic potential (MEP) calculations were used to study the electronic characteristics of these IHB. As expected, our results show that NBO calculations are better than MEP to describe the strength of the IHBs. NBO energies (∆Eij(2)) show that the main contributions to energy stabilization correspond to LPàσ* interactions for IHBs, O1…O2-H2 and the delocalization LPàπ* for O2-C2 = Cα(β). For the O1…O2-H2 interaction, the values of ∆Eij(2) can be attributed to the difference in the overlap ability between orbitals i and j (Fij), instead of the energy difference between them. The large energy for the LP O2àπ* C2 = Cα(β) interaction in the compounds 9-Hydroxy-5-oxo-4,8, 8-trimethyl-l,9(8H)-anthracenecarbolactone (VIII) and 9,10-dihydroxy-4,4-dimethylanthracen-1(4H)-one (VII) (55.49 and 60.70 kcal/mol, respectively) when compared with the remaining molecules (all less than 50 kcal/mol), suggests that the IHBs in VIII and VII are strongly resonance assisted.
topic hydroquinone
hydrogen bond
DFT
molecular electrostatic potential
natural bond orbital
url http://www.mdpi.com/1420-3049/19/7/9354
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AT leonardossantos intramolecularhydrogenbondinbiologicallyactiveocarbonylhydroquinones
AT ramiroarayamaturana intramolecularhydrogenbondinbiologicallyactiveocarbonylhydroquinones
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