Multicomponent Synthesis of Cyclic Frameworks on Knoevenagel-Initiated Domino Reactions
Yifeng Han, Min Xia
Abstract
Yifeng Han, Min Xia
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.
OpenAlex reports 47 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
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