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Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach

[Image: see text] Thermochemical properties and intramolecular interactions of 2,2′-dinitrodiphenyl disulfide (2DNDPDS) and 4,4′-dinitrodiphenyl disulfide (4DNDPDS) were determined and analyzed. Their standard molar formation enthalpies in the gas phase (Δ(f)H(m)(°)(g)’s) were experimentally determi...

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Autores principales: Flores, Henoc, Ramos, Fernando, Hernández-Pérez, Julio M., Solano-Altamirano, Juan M., Camarillo, E. Adriana, Sandoval-Lira, Jacinto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10331731/
https://www.ncbi.nlm.nih.gov/pubmed/37365903
http://dx.doi.org/10.1021/acs.jpca.3c01624
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author Flores, Henoc
Ramos, Fernando
Hernández-Pérez, Julio M.
Solano-Altamirano, Juan M.
Camarillo, E. Adriana
Sandoval-Lira, Jacinto
author_facet Flores, Henoc
Ramos, Fernando
Hernández-Pérez, Julio M.
Solano-Altamirano, Juan M.
Camarillo, E. Adriana
Sandoval-Lira, Jacinto
author_sort Flores, Henoc
collection PubMed
description [Image: see text] Thermochemical properties and intramolecular interactions of 2,2′-dinitrodiphenyl disulfide (2DNDPDS) and 4,4′-dinitrodiphenyl disulfide (4DNDPDS) were determined and analyzed. Their standard molar formation enthalpies in the gas phase (Δ(f)H(m)(°)(g)’s) were experimentally determined; theoretically, they were computed using the G4 composite method and atomization reactions. Specifically, Δ(f)H(m)(°)(g)’s were obtained by combining formation enthalpies in the condensed phase and enthalpies of phase change. Formation enthalpies in the condensed phase were determined experimentally through combustion energies, which in turn were found by means of a rotatory bomb combustion calorimeter. Sublimation enthalpies were derived from thermogravimetric experiments, measuring the rate of mass loss and using Langmuir and Clausius–Clapeyron equations. Fusion enthalpies and heat capacities of the solid and liquid phases were measured as functions of temperature by differential scanning calorimetry, and the heat capacities of the gas phase were calculated via molecular orbital calculations. Theoretical and experimental Δ(f)H(m)(°)(g)’s differed by <5.5kJ·mol(–1), and isomerization enthalpies are discussed. In addition, using theoretical tools [natural bond orbitals (NBO) and quantum theory of atoms in molecules (QTAIM)], intramolecular interactions were analyzed. An uncommon hypervalent four-center six-electron interaction of type O···S–S···O was found in 2DNDPDS. This hypervalent interaction, in addition to the extent of conjugation between the aryl and NO(2) moieties and the formation of intramolecular C–H···S hydrogen bonds, counteracts the repulsion caused by steric repulsions. Hydrogen bonding was confirmed through geometric parameters as well as QTAIM.
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spelling pubmed-103317312023-07-11 Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach Flores, Henoc Ramos, Fernando Hernández-Pérez, Julio M. Solano-Altamirano, Juan M. Camarillo, E. Adriana Sandoval-Lira, Jacinto J Phys Chem A [Image: see text] Thermochemical properties and intramolecular interactions of 2,2′-dinitrodiphenyl disulfide (2DNDPDS) and 4,4′-dinitrodiphenyl disulfide (4DNDPDS) were determined and analyzed. Their standard molar formation enthalpies in the gas phase (Δ(f)H(m)(°)(g)’s) were experimentally determined; theoretically, they were computed using the G4 composite method and atomization reactions. Specifically, Δ(f)H(m)(°)(g)’s were obtained by combining formation enthalpies in the condensed phase and enthalpies of phase change. Formation enthalpies in the condensed phase were determined experimentally through combustion energies, which in turn were found by means of a rotatory bomb combustion calorimeter. Sublimation enthalpies were derived from thermogravimetric experiments, measuring the rate of mass loss and using Langmuir and Clausius–Clapeyron equations. Fusion enthalpies and heat capacities of the solid and liquid phases were measured as functions of temperature by differential scanning calorimetry, and the heat capacities of the gas phase were calculated via molecular orbital calculations. Theoretical and experimental Δ(f)H(m)(°)(g)’s differed by <5.5kJ·mol(–1), and isomerization enthalpies are discussed. In addition, using theoretical tools [natural bond orbitals (NBO) and quantum theory of atoms in molecules (QTAIM)], intramolecular interactions were analyzed. An uncommon hypervalent four-center six-electron interaction of type O···S–S···O was found in 2DNDPDS. This hypervalent interaction, in addition to the extent of conjugation between the aryl and NO(2) moieties and the formation of intramolecular C–H···S hydrogen bonds, counteracts the repulsion caused by steric repulsions. Hydrogen bonding was confirmed through geometric parameters as well as QTAIM. American Chemical Society 2023-06-27 /pmc/articles/PMC10331731/ /pubmed/37365903 http://dx.doi.org/10.1021/acs.jpca.3c01624 Text en © 2023 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Flores, Henoc
Ramos, Fernando
Hernández-Pérez, Julio M.
Solano-Altamirano, Juan M.
Camarillo, E. Adriana
Sandoval-Lira, Jacinto
Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach
title Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach
title_full Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach
title_fullStr Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach
title_full_unstemmed Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach
title_short Stabilizing Effect of a 4c/6e Hypervalent Bond in Dinitrodiphenyl Disulfides and Their Thermochemical Properties: Experimental and Computational Approach
title_sort stabilizing effect of a 4c/6e hypervalent bond in dinitrodiphenyl disulfides and their thermochemical properties: experimental and computational approach
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10331731/
https://www.ncbi.nlm.nih.gov/pubmed/37365903
http://dx.doi.org/10.1021/acs.jpca.3c01624
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