1968Angewandte Chemie International Edition in EnglishRequires access

Modification of the Orientation of Substitution Reactions on Thiophene and Furan Derivatives

JA. L. GOL'DFARB, Ju. B. Volkenštein, L. I. BELEN'KIJ

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Abstract

Abstract Under normal conditions, thiophene and furan derivatives are substituted in the α position, and no convenient alternative methods for the preparation of β‐substitution products have been available until now. The present article describes a method that permits the synthesis of many β‐substituted thiophenes and furans. In this method, the carbonyl group in α‐aldehydes or ketones of the thiophene and furan series is blocked by complex formation with an excess of aluminum chloride, so that electrophilic substitution takes place in position 4. In another useful method, the carbonyl group is blocked by acetalization. The acetals can be metalated in the ring by organolithium compounds.

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Abstract Under normal conditions, thiophene and furan derivatives are substituted in the α position, and no convenient alternative methods for the preparation of β‐substitution products have been available until now. The present article describes a method that permits the synthesis of many β‐substituted thiophenes and furans. In this method, the carbonyl group in α‐aldehydes or ketones of the thiophene and furan series is blocked by complex formation with an excess of aluminum chloride, so that electrophilic substitution takes place in position 4. In another useful method, the carbonyl group is blocked by acetalization. The acetals can be metalated in the ring by organolithium compounds.

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Available abstract

Abstract Under normal conditions, thiophene and furan derivatives are substituted in the α position, and no convenient alternative methods for the preparation of β‐substitution products have been available until now. The present article describes a method that permits the synthesis of many β‐substituted thiophenes and furans. In this method, the carbonyl group in α‐aldehydes or ketones of the thiophene and furan series is blocked by complex formation with an excess of aluminum chloride, so that electrophilic substitution takes place in position 4. In another useful method, the carbonyl group is blocked by acetalization. The acetals can be metalated in the ring by organolithium compounds.

Key concepts: Furan, Thiophene, Electrophilic substitution, Chemistry, Carbonyl group, Ring (chemistry), Electrophile, Substitution (logic)

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