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HERO ID
3728657
Reference Type
Journal Article
Title
Chemistry of 2,5-dihydroxyacetophenone, a Key Chromophore in Cellulosic Substrates
Author(s)
Hosoya, T; French, AD; Rosenau, T
Year
2015
Is Peer Reviewed?
1
Journal
Mini - Reviews in Organic Chemistry
ISSN:
1570-193X
Volume
12
Issue
1
Page Numbers
88-95
Language
English
DOI
10.2174/1570193x11666141028235623
Web of Science Id
WOS:000346843800006
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84920771397&doi=10.2174%2f1570193x11666141028235623&partnerID=40&md5=39ea0491505d45f10bd2edede8af22c5
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Abstract
2,5-Dihydroxyacetophenone (DHAP) is one of the three key chromophores found in aged cellulosics. Knowledge of the general reactivity and chemistry of this compound is helpful for a better understanding of cellulose aging and yellowing as well as bleaching of cellulosic materials - processes that also have considerable economic importance. This paper reviews the reactions reported for 2,5-dihydroxyacetophenone from the viewpoints of both synthesis and general reactivity. The compound exhibits a rich chemistry due to the superposition of the hydroquinone structure and the 2-hydroxyacetophenone structure with its alpha-hydroxy ortho-quinone methide tautomer. The 1-acetyl group exhibits high reactivity attributed to resonance of the carbonyl group with the pi-electrons of the benzene ring and proton donation to the carbonyl group from the adjacent 2-hydroxy group. One of the prominent conversion paths for DHAP are aldol-type reactions that have been applied for the synthesis of a multitude of flavonoids. Other reaction pathways are nucleophilic substitution on the carbonyl group mainly with amines, electrophilic addition to the benzene ring, and oxidation into the corresponding benzoquinone. There are also quite a few reports of selective derivatization of the 5-hydroxy group of DHAP that has a higher reactivity than its 2-OH counterpart that is engaged in tight hydrogen bonding with the acetyl carbonyl moiety and thus largely blocked in esterifications and similar derivatizations.
Keywords
2-hydroxy-acetophenones; aging; aldol reaction; bleaching; cellulose; chromophore; reaction mechanism
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