2010Current Organic ChemistryRequires access

Multicomponent Synthesis of Cyclic Frameworks on Knoevenagel-Initiated Domino Reactions

Yifeng Han, Min Xia

Open publisher page 47 citations

Abstract

Major aspects of multicomponent synthesis of cyclic frameworks are reviewed with special focus on Knoevenagel-based domino reactions. Particularly, the Knoevenagel-Cycloaddition and the Knoevenagel-Michael cascades are the majority of reaction types which contribute to the building of complicated cyclic molecular scaffolds. Although samples of the other Knoevenagel-induced reactions are not abundant, their creativity in production of novel cyclic structures should not be neglected. The presented reports herein are sufficient enough to confirm that Knoevenagel-induced domino reactions have been one of the most powerful and productive tools for the construction of novel and complicated frameworks.

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Major aspects of multicomponent synthesis of cyclic frameworks are reviewed with special focus on Knoevenagel-based domino reactions. Particularly, the Knoevenagel-Cycloaddition and the Knoevenagel-Michael cascades are the majority of reaction types which contribute to the building of complicated cyclic molecular scaffolds. Although samples of the other Knoevenagel-induced reactions are not abundant, their creativity in production of novel cyclic structures should not be neglected. The presented reports herein are sufficient enough to confirm that Knoevenagel-induced domino reactions have been one of the most powerful and productive tools for the construction of novel and complicated frameworks.

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Available abstract

Major aspects of multicomponent synthesis of cyclic frameworks are reviewed with special focus on Knoevenagel-based domino reactions. Particularly, the Knoevenagel-Cycloaddition and the Knoevenagel-Michael cascades are the majority of reaction types which contribute to the building of complicated cyclic molecular scaffolds. Although samples of the other Knoevenagel-induced reactions are not abundant, their creativity in production of novel cyclic structures should not be neglected. The presented reports herein are sufficient enough to confirm that Knoevenagel-induced domino reactions have been one of the most powerful and productive tools for the construction of novel and complicated frameworks.

Key concepts: Knoevenagel condensation, Domino, Chemistry, Cycloaddition, Cascade reaction, Reaction conditions, Combinatorial chemistry, Organic chemistry

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