Regioselective Reductive Electrophilic Substitution of Derivatives of 3,4,5-Trimethoxybenzaldehyde
Articolo
Data di Pubblicazione:
1992
Citazione:
Regioselective Reductive Electrophilic Substitution of Derivatives of
3,4,5-Trimethoxybenzaldehyde / Azzena, Ugo Gavino; Teresa, Denurra; Giovanni, Melloni; Emanuela, Azara; Stefania, Contini; Emma, Fenude. - In: JOURNAL OF ORGANIC CHEMISTRY. - ISSN 0022-3263. - 57(1992), pp. 3101-3106.
Abstract:
The behavior of several protected derivatives of 3,4,5-trimethoxybenzaldehydeh as been investigated under
conditions of electron transfer from alkali metals in aprotic solvents. The 4methosy group can be regioselectively
removed in good to high yield under such conditions, and an appropriate choice of the protecting group, metal,
and solvent allows its substitution with a variety of electrophiles. 3,4,5-"rimethoxybeddehyde dimethyl acetal,
1, is the starting material of choice for a new general synthetic approach to several polysubstituted resorcinol
dimethyl ethers. Inveatigation of the m e d " of demethoxylation, with the aid of labeling experiments, showed
that reductive demethoxylation is strongly influenced by the nature of the aldehyde protective group employed
conditions of electron transfer from alkali metals in aprotic solvents. The 4methosy group can be regioselectively
removed in good to high yield under such conditions, and an appropriate choice of the protecting group, metal,
and solvent allows its substitution with a variety of electrophiles. 3,4,5-"rimethoxybeddehyde dimethyl acetal,
1, is the starting material of choice for a new general synthetic approach to several polysubstituted resorcinol
dimethyl ethers. Inveatigation of the m e d " of demethoxylation, with the aid of labeling experiments, showed
that reductive demethoxylation is strongly influenced by the nature of the aldehyde protective group employed
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
electron transfer; reductive metalation; olivetol
Elenco autori:
Azzena, Ugo Gavino; Teresa, Denurra; Giovanni, Melloni; Emanuela, Azara; Stefania, Contini; Emma, Fenude
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