Herein is delineated a first systematic framework for the definition of structure-antioxidant property relationships in the dihydroxynaphthalene (DHN) series. The results obtained by a combined experimental and theoretical approach revealed that 1,8-DHN is the best performing antioxidant platform, with its unique hydrogen-bonded peri-hydroxylation pattern contributing to a fast H atom transfer process. Moreover, the comparative analysis of the antioxidant properties of DHNs carried out by performing DPPH and FRAP assays and laser flash photolysis experiments, revealed the higher antioxidant power associated with an α-substitution pattern (i. e. in 1,8- and 1,6-DHN) with respect to DHNs exhibiting a β-substitution pattern (i. e. in 2,6- and ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
Herein is delineated a first systematic framework for the definition of structure-antioxidant proper...
Herein is delineated a first systematic framework for the definition of structure-antioxidant proper...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol, 5, and its 4-methoxy derivative, 6, were found to be potent H-atom transfer (HA...
1,8-Naphthalenediol, 5, and its 4-methoxy derivative, 6, were found to be potent H-atom transfer (HA...
The oxidative polymerization of hydroxylated naphthalene derivatives, including chiefly 1,8-dihydrox...
The oxidation mechanisms of naphthalene by OH radicals under inert (He) conditions have been studied...
Antioxidants, which are molecules capable of inhibiting or quenching free radicals, are believed to ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
Herein is delineated a first systematic framework for the definition of structure-antioxidant proper...
Herein is delineated a first systematic framework for the definition of structure-antioxidant proper...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol (dihydroxynaphthalene, 1,8-DHN) has been shown to be a potent hydrogen atom tran...
1,8-Naphthalenediol, 5, and its 4-methoxy derivative, 6, were found to be potent H-atom transfer (HA...
1,8-Naphthalenediol, 5, and its 4-methoxy derivative, 6, were found to be potent H-atom transfer (HA...
The oxidative polymerization of hydroxylated naphthalene derivatives, including chiefly 1,8-dihydrox...
The oxidation mechanisms of naphthalene by OH radicals under inert (He) conditions have been studied...
Antioxidants, which are molecules capable of inhibiting or quenching free radicals, are believed to ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...
International audienceIn Sphingomonas CHY-1, a single ring-hydroxylating dioxygenase is responsible ...