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DDQ as a versatile and easily recyclable oxidant: a systematic review

2,3-Dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) is the most widely used quinone with a high reduction potential, and it commonly mediates hydride transfer reactions and shows three accessible oxidation states: quinone (oxidized), semiquinone (one-electron-reduced), and hydroquinone (two-electron-red...

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Autores principales: Alsharif, Meshari A., Raja, Qandeel Alam, Majeed, Nida Abdul, Jassas, Rabab. S., Alsimaree, Abdulrahman A., Sadiq, Amina, Naeem, Nafeesa, Mughal, Ehsan Ullah, Alsantali, Reem I., Moussa, Ziad, Ahmed, Saleh A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9040906/
https://www.ncbi.nlm.nih.gov/pubmed/35479576
http://dx.doi.org/10.1039/d1ra04575j
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author Alsharif, Meshari A.
Raja, Qandeel Alam
Majeed, Nida Abdul
Jassas, Rabab. S.
Alsimaree, Abdulrahman A.
Sadiq, Amina
Naeem, Nafeesa
Mughal, Ehsan Ullah
Alsantali, Reem I.
Moussa, Ziad
Ahmed, Saleh A.
author_facet Alsharif, Meshari A.
Raja, Qandeel Alam
Majeed, Nida Abdul
Jassas, Rabab. S.
Alsimaree, Abdulrahman A.
Sadiq, Amina
Naeem, Nafeesa
Mughal, Ehsan Ullah
Alsantali, Reem I.
Moussa, Ziad
Ahmed, Saleh A.
author_sort Alsharif, Meshari A.
collection PubMed
description 2,3-Dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) is the most widely used quinone with a high reduction potential, and it commonly mediates hydride transfer reactions and shows three accessible oxidation states: quinone (oxidized), semiquinone (one-electron-reduced), and hydroquinone (two-electron-reduced). DDQ has found broad utility as a stoichiometric oxidant in the functionalization of activated C–H bonds and the dehydrogenation of saturated C–C, C–O, and C–N bonds. The cost and toxicity of DDQ triggered recent efforts to develop methods that employ catalytic quantities of DDQ in combination with alternative stoichiometric oxidants. The aerobic catalytic approach was established for the selective oxidation of non-sterically hindered electron-rich benzyl methyl ethers and benzylic alcohols, and effectively extended to the oxidative deprotection of p-methoxybenzyl ethers to generate the alcohols in high selectivity. A combination of DDQ and protic acid is known to oxidize several aromatic donors to the corresponding cation radicals. The excited-state DDQ converts benzyls, heteroarenes, fluoroarenes, benzene, and olefins into their radical cation forms as well as chloride and other anions into their respective radicals. These reactive intermediates have been employed for the generation of C–C and C–X (N, O, or Cl) bonds in the synthesis of valuable natural products and organic compounds. To the best of our knowledge, however, there is still no review article exclusively describing the applications of DDQ in organic synthesis. Therefore, in the present review, we provide an overview of DDQ-induced organic transformations with their scope, limitations and the proposed reaction mechanisms.
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spelling pubmed-90409062022-04-26 DDQ as a versatile and easily recyclable oxidant: a systematic review Alsharif, Meshari A. Raja, Qandeel Alam Majeed, Nida Abdul Jassas, Rabab. S. Alsimaree, Abdulrahman A. Sadiq, Amina Naeem, Nafeesa Mughal, Ehsan Ullah Alsantali, Reem I. Moussa, Ziad Ahmed, Saleh A. RSC Adv Chemistry 2,3-Dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) is the most widely used quinone with a high reduction potential, and it commonly mediates hydride transfer reactions and shows three accessible oxidation states: quinone (oxidized), semiquinone (one-electron-reduced), and hydroquinone (two-electron-reduced). DDQ has found broad utility as a stoichiometric oxidant in the functionalization of activated C–H bonds and the dehydrogenation of saturated C–C, C–O, and C–N bonds. The cost and toxicity of DDQ triggered recent efforts to develop methods that employ catalytic quantities of DDQ in combination with alternative stoichiometric oxidants. The aerobic catalytic approach was established for the selective oxidation of non-sterically hindered electron-rich benzyl methyl ethers and benzylic alcohols, and effectively extended to the oxidative deprotection of p-methoxybenzyl ethers to generate the alcohols in high selectivity. A combination of DDQ and protic acid is known to oxidize several aromatic donors to the corresponding cation radicals. The excited-state DDQ converts benzyls, heteroarenes, fluoroarenes, benzene, and olefins into their radical cation forms as well as chloride and other anions into their respective radicals. These reactive intermediates have been employed for the generation of C–C and C–X (N, O, or Cl) bonds in the synthesis of valuable natural products and organic compounds. To the best of our knowledge, however, there is still no review article exclusively describing the applications of DDQ in organic synthesis. Therefore, in the present review, we provide an overview of DDQ-induced organic transformations with their scope, limitations and the proposed reaction mechanisms. The Royal Society of Chemistry 2021-09-08 /pmc/articles/PMC9040906/ /pubmed/35479576 http://dx.doi.org/10.1039/d1ra04575j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Alsharif, Meshari A.
Raja, Qandeel Alam
Majeed, Nida Abdul
Jassas, Rabab. S.
Alsimaree, Abdulrahman A.
Sadiq, Amina
Naeem, Nafeesa
Mughal, Ehsan Ullah
Alsantali, Reem I.
Moussa, Ziad
Ahmed, Saleh A.
DDQ as a versatile and easily recyclable oxidant: a systematic review
title DDQ as a versatile and easily recyclable oxidant: a systematic review
title_full DDQ as a versatile and easily recyclable oxidant: a systematic review
title_fullStr DDQ as a versatile and easily recyclable oxidant: a systematic review
title_full_unstemmed DDQ as a versatile and easily recyclable oxidant: a systematic review
title_short DDQ as a versatile and easily recyclable oxidant: a systematic review
title_sort ddq as a versatile and easily recyclable oxidant: a systematic review
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9040906/
https://www.ncbi.nlm.nih.gov/pubmed/35479576
http://dx.doi.org/10.1039/d1ra04575j
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