34133-53-4Relevant academic research and scientific papers
An eco-friendly Co(OAc)2-catalyzed aerobic oxidation of 4-benzylphenols into 4-hydroxybenzophenones
Huang, Jian-Gang,Guo, Ying,Jiang, Jian-An,Liu, Hong-Wei,Ji, Ya-Fei
, p. 7115 - 7124 (2015)
An undecorated Co(OAc)2-catalyzed aerobic oxidation system has been reported that enables direct transformation of 4-benzylphenols into the corresponding 4-hydroxybenzophenones. The procedure is especially suitable for electron-withdrawing group-containing substrates, which are commonly inefficient to conduct this category of oxidation. Based on well-defined p-benzoquinone methides and the confirmed ethereal intermediate, a plausible mechanism was depicted.
Aromatic Nitro-group Displacement Reactions. Part 3. Minor Products of the o-Cyanophenol Synthesis
Gorvin, John H.
, p. 738 - 762 (2007/10/02)
In dipolar aprotic solvents, the action of cyanide ions on a moderately activated aromatic or heteroaromatic nitro-compound yields, in addition to the o-cyanophenol, a range of products generated through nitro-group reduction.
Preparation of cyanophenols
-
, (2008/06/13)
A process for the preparation of a cyanophenol of formula (I) SPC1 wherein Z is a substituent in the 4- or 6-position with respect to the hydroxy group, characterized in that cyanide ions are reacted in a dipolar aprotic solvent with a nitrobenzene of formula (II) SPC2 wherein Z has the same value as in formula (I) and is a group, other than a nitro group, known to withdraw electrons in substitution reactions and which does not contain a proton capable of ionizing under the defined reaction conditions if such ionization would inhibit the electron-withdrawing effect of the group Z. In formula (I) and (II) the benzene ring is optionally substituted by one or more non electron-withdrawing groups, or by one or more electron-withdrawing groups provided that such electron-withdrawing groups are in positions other than the 4- and 6-positions with respect to the hydroxy group. The compounds of formula (I) are of value in being readily hydrolysed to the corresponding salicylic acids of formula (III) SPC3 certain of which have been described in the literature as possessing a variety of pharmacological properties.
