Mechanistic investigations on the previously reported reduction of B-alkylcatecholboranes in the presence of methanol led to the disclosure of a new mechanism involving catechol as a reducing agent. More than just revising the mechanism of this reaction, we disclose here the surprising role of catechol, a chain breaking antioxidant, which becomes a source of hydrogen atoms in an efficient radical chain proces
none5noMultidefence antioxidants represent a valuable solution for the protection against oxidative ...
Catechins are polyphenolic compounds—flavanols of the flavonoid family found in a variety of p...
Green tea is characterized by the presence of an abundance of polyphenolic compounds, also known as ...
The conversion of alkylboranes to the corresponding alkanes is classically per-formed via protonolys...
The conversion of alkylboranes to the corresponding alkanes is classically performed via protonolysi...
It is known that there are three mechanisms for the radical-scavenging reactions of phenolic compoun...
To feature the radical scavenging mechanism is of considerable importance in synthesis of novel anti...
The radical reduction of B-alkylcatecholboranes into alkanes using alcohols and water as hydrogen at...
The development of novel antioxidants showing a stronger radical-scavenging activity than natural an...
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...
Oxidative damage shifts from lipid peroxidation to thiol arylation by catechol-containing antioxidan...
Catechins, the major constituents of tea, have been shown to have powerful antioxidant and antitumor...
Catechols and 1,8-naphthalene diols contain one "free" hydroxyl and one intramolecularly H-bonded hy...
Abstract—Tea catechins, an important class of polyphenols, have been shown to have wide spectrum of ...
none5noMultidefence antioxidants represent a valuable solution for the protection against oxidative ...
Catechins are polyphenolic compounds—flavanols of the flavonoid family found in a variety of p...
Green tea is characterized by the presence of an abundance of polyphenolic compounds, also known as ...
The conversion of alkylboranes to the corresponding alkanes is classically per-formed via protonolys...
The conversion of alkylboranes to the corresponding alkanes is classically performed via protonolysi...
It is known that there are three mechanisms for the radical-scavenging reactions of phenolic compoun...
To feature the radical scavenging mechanism is of considerable importance in synthesis of novel anti...
The radical reduction of B-alkylcatecholboranes into alkanes using alcohols and water as hydrogen at...
The development of novel antioxidants showing a stronger radical-scavenging activity than natural an...
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...
Oxidative damage shifts from lipid peroxidation to thiol arylation by catechol-containing antioxidan...
Catechins, the major constituents of tea, have been shown to have powerful antioxidant and antitumor...
Catechols and 1,8-naphthalene diols contain one "free" hydroxyl and one intramolecularly H-bonded hy...
Abstract—Tea catechins, an important class of polyphenols, have been shown to have wide spectrum of ...
none5noMultidefence antioxidants represent a valuable solution for the protection against oxidative ...
Catechins are polyphenolic compounds—flavanols of the flavonoid family found in a variety of p...
Green tea is characterized by the presence of an abundance of polyphenolic compounds, also known as ...