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Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship

The H-donating activity of phenol and the H-abstraction activity of phenol radicals have been extensively studied. In this article, the second-order rate constants of 25 hydrogen atom transfer (HAT) reactions between phenols and PINO and DPPH radicals in acetonitrile at 298 K were studied. Thermo-ki...

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Autores principales: Fu, Yan-Hua, Zhang, Yanwei, Wang, Fang, Zhao, Ling, Shen, Guang-Bin, Zhu, Xiao-Qing
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/PMC9869660/
https://www.ncbi.nlm.nih.gov/pubmed/36756400
http://dx.doi.org/10.1039/d2ra06877j
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author Fu, Yan-Hua
Zhang, Yanwei
Wang, Fang
Zhao, Ling
Shen, Guang-Bin
Zhu, Xiao-Qing
author_facet Fu, Yan-Hua
Zhang, Yanwei
Wang, Fang
Zhao, Ling
Shen, Guang-Bin
Zhu, Xiao-Qing
author_sort Fu, Yan-Hua
collection PubMed
description The H-donating activity of phenol and the H-abstraction activity of phenol radicals have been extensively studied. In this article, the second-order rate constants of 25 hydrogen atom transfer (HAT) reactions between phenols and PINO and DPPH radicals in acetonitrile at 298 K were studied. Thermo-kinetic parameters ΔG(≠o)(XH) were obtained using a kinetic equation [ΔG(≠)(XH/Y) = ΔG(≠o)(XH) + ΔG(≠o)(Y)]. Bond dissociation free energies ΔG(o)(XH) were calculated by the iBonD HM method, whose details are available at https://pka.luoszgroup.com/bde_prediction. Intrinsic resistance energies ΔG(≠)(XH/X) and ΔG(≠o)(X) were determined as ΔG(≠o)(XH) and ΔG(o)(XH) were available. ΔG(o)(XH), ΔG(≠)(XH/X), ΔG(≠o)(XH) and ΔG(≠o)(X) were used to assess the H-donating abilities of the studied phenols and the H-abstraction abilities of phenol radicals in thermodynamics, kinetics and actual HAT reactions. The effect of structures on these four parameters was discussed. The reliabilities of ΔG(≠o)(XH) and ΔG(≠o)(X) were examined. The difference between the method of determining ΔG(≠)(XH/X) mentioned in this study and the dynamic nuclear magnetic method mentioned in the literature was studied. Via this study, not only ΔG(o)(XH), ΔG(≠)(XH/X), ΔG(≠o)(XH) and ΔG(≠o)(X) of phenols could be quantitatively evaluated, but also the structure–activity relationship of phenols is clearly demonstrated. Moreover, it lays the foundation for designing and synthesizing more antioxidants and radicals.
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spelling pubmed-98696602023-02-07 Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship Fu, Yan-Hua Zhang, Yanwei Wang, Fang Zhao, Ling Shen, Guang-Bin Zhu, Xiao-Qing RSC Adv Chemistry The H-donating activity of phenol and the H-abstraction activity of phenol radicals have been extensively studied. In this article, the second-order rate constants of 25 hydrogen atom transfer (HAT) reactions between phenols and PINO and DPPH radicals in acetonitrile at 298 K were studied. Thermo-kinetic parameters ΔG(≠o)(XH) were obtained using a kinetic equation [ΔG(≠)(XH/Y) = ΔG(≠o)(XH) + ΔG(≠o)(Y)]. Bond dissociation free energies ΔG(o)(XH) were calculated by the iBonD HM method, whose details are available at https://pka.luoszgroup.com/bde_prediction. Intrinsic resistance energies ΔG(≠)(XH/X) and ΔG(≠o)(X) were determined as ΔG(≠o)(XH) and ΔG(o)(XH) were available. ΔG(o)(XH), ΔG(≠)(XH/X), ΔG(≠o)(XH) and ΔG(≠o)(X) were used to assess the H-donating abilities of the studied phenols and the H-abstraction abilities of phenol radicals in thermodynamics, kinetics and actual HAT reactions. The effect of structures on these four parameters was discussed. The reliabilities of ΔG(≠o)(XH) and ΔG(≠o)(X) were examined. The difference between the method of determining ΔG(≠)(XH/X) mentioned in this study and the dynamic nuclear magnetic method mentioned in the literature was studied. Via this study, not only ΔG(o)(XH), ΔG(≠)(XH/X), ΔG(≠o)(XH) and ΔG(≠o)(X) of phenols could be quantitatively evaluated, but also the structure–activity relationship of phenols is clearly demonstrated. Moreover, it lays the foundation for designing and synthesizing more antioxidants and radicals. The Royal Society of Chemistry 2023-01-23 /pmc/articles/PMC9869660/ /pubmed/36756400 http://dx.doi.org/10.1039/d2ra06877j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Fu, Yan-Hua
Zhang, Yanwei
Wang, Fang
Zhao, Ling
Shen, Guang-Bin
Zhu, Xiao-Qing
Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship
title Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship
title_full Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship
title_fullStr Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship
title_full_unstemmed Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship
title_short Quantitative evaluation of the actual hydrogen atom donating activities of O–H bonds in phenols: structure–activity relationship
title_sort quantitative evaluation of the actual hydrogen atom donating activities of o–h bonds in phenols: structure–activity relationship
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9869660/
https://www.ncbi.nlm.nih.gov/pubmed/36756400
http://dx.doi.org/10.1039/d2ra06877j
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