Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim The development of hydrogen bond donors (HBDs) as catalytic moieties in the cycloaddition of carbon dioxide to epoxides is an active field of research to access efficient, inexpensive and sustainable metal-free systems for the conversion of ca...
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th-mahidol.505262020-01-27T15:15:12Z Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study Prapussorn Yingcharoen Chutima Kongtes Sunatda Arayachukiat Kittipong Suvarnapunya Sai V.C. Vummaleti Sippakorn Wannakao Luigi Cavallo Albert Poater Valerio D' Elia Vidyasirimedhi Institute of Science and Technology King Abdullah University of Science and Technology Faculty of Medicine, Siriraj Hospital, Mahidol University Universitat de Girona Chemical Engineering Chemistry © 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim The development of hydrogen bond donors (HBDs) as catalytic moieties in the cycloaddition of carbon dioxide to epoxides is an active field of research to access efficient, inexpensive and sustainable metal-free systems for the conversion of carbon dioxide to useful chemicals. Thus far, no systematic attempt to correlate the activity of a diverse selection of HBDs to their physico-chemical properties has been undertaken. In this work, we investigate factors influencing the catalytic activity of hydroxyl HBDs from different chemical families under ambient conditions by considering the HBDs Brønsted acidity (expressed as pK a ), the number of hydroxyls and structural aspects. As an effect, this study highlights the crucial role of the hydroxyl protons’ Brønsted acidity in determining the catalytic activity of the HBDs, identifies an ideal range for the hydroxyl HBDs proton acidity (9 <pK a <11) and leads to a revaluation of phenol and to the discovery of a simple ascorbic acid derivative as efficient HBDs for the title cycloaddition reaction. Density functional theory (DFT) calculations show mild reactions barriers for the reaction catalysed by phenol and suggest the occurrence of aggregation between molecules of ascorbic acid as a further factor affecting catalytic activity. (Figure presented.). 2020-01-27T08:07:41Z 2020-01-27T08:07:41Z 2019-01-22 Article Advanced Synthesis and Catalysis. Vol.361, No.2 (2019), 366-373 10.1002/adsc.201801093 16154169 16154150 2-s2.0-85057549632 https://repository.li.mahidol.ac.th/handle/123456789/50526 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85057549632&origin=inward |
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Chemical Engineering Chemistry Prapussorn Yingcharoen Chutima Kongtes Sunatda Arayachukiat Kittipong Suvarnapunya Sai V.C. Vummaleti Sippakorn Wannakao Luigi Cavallo Albert Poater Valerio D' Elia Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study |
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© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim The development of hydrogen bond donors (HBDs) as catalytic moieties in the cycloaddition of carbon dioxide to epoxides is an active field of research to access efficient, inexpensive and sustainable metal-free systems for the conversion of carbon dioxide to useful chemicals. Thus far, no systematic attempt to correlate the activity of a diverse selection of HBDs to their physico-chemical properties has been undertaken. In this work, we investigate factors influencing the catalytic activity of hydroxyl HBDs from different chemical families under ambient conditions by considering the HBDs Brønsted acidity (expressed as pK a ), the number of hydroxyls and structural aspects. As an effect, this study highlights the crucial role of the hydroxyl protons’ Brønsted acidity in determining the catalytic activity of the HBDs, identifies an ideal range for the hydroxyl HBDs proton acidity (9 <pK a <11) and leads to a revaluation of phenol and to the discovery of a simple ascorbic acid derivative as efficient HBDs for the title cycloaddition reaction. Density functional theory (DFT) calculations show mild reactions barriers for the reaction catalysed by phenol and suggest the occurrence of aggregation between molecules of ascorbic acid as a further factor affecting catalytic activity. (Figure presented.). |
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Vidyasirimedhi Institute of Science and Technology |
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Vidyasirimedhi Institute of Science and Technology Prapussorn Yingcharoen Chutima Kongtes Sunatda Arayachukiat Kittipong Suvarnapunya Sai V.C. Vummaleti Sippakorn Wannakao Luigi Cavallo Albert Poater Valerio D' Elia |
format |
Article |
author |
Prapussorn Yingcharoen Chutima Kongtes Sunatda Arayachukiat Kittipong Suvarnapunya Sai V.C. Vummaleti Sippakorn Wannakao Luigi Cavallo Albert Poater Valerio D' Elia |
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Prapussorn Yingcharoen |
title |
Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study |
title_short |
Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study |
title_full |
Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study |
title_fullStr |
Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study |
title_full_unstemmed |
Assessing the pK <inf>a</inf> -Dependent Activity of Hydroxyl Hydrogen Bond Donors in the Organocatalyzed Cycloaddition of Carbon Dioxide to Epoxides: Experimental and Theoretical Study |
title_sort |
assessing the pk <inf>a</inf> -dependent activity of hydroxyl hydrogen bond donors in the organocatalyzed cycloaddition of carbon dioxide to epoxides: experimental and theoretical study |
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2020 |
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https://repository.li.mahidol.ac.th/handle/123456789/50526 |
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1763490571738939392 |