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Role of Click Chemistry in Organic Synthesis
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Click chemistry involves highly efficient organic reactions of two or more highly functionalized chemical entities under eco-benign conditions for the synthesis of different heterocycles. Several organic reactions such as nucleophilic ring-opening reactions, cyclo-additions, nucleophilic addition reactions, thiol-ene reactions, Diels Alder reactions, etc. are included in click reactions. These reactions have very important features i.e. high functional group tolerance, formation of a single product, high atom economy, high yielding, no need for column purification, etc. It also possesses several applications in drug discovery, supramolecular chemistry, material science, nanotechnology, etc. Being highly significant and valuable, we have elaborated on several aspects of click reactions in organic synthesis in this chapter. Recent advancements in the field of organic synthesis using click chemistry approach have been deliberated by citing last five years articles.
Title: Role of Click Chemistry in Organic Synthesis
Description:
Click chemistry involves highly efficient organic reactions of two or more highly functionalized chemical entities under eco-benign conditions for the synthesis of different heterocycles.
Several organic reactions such as nucleophilic ring-opening reactions, cyclo-additions, nucleophilic addition reactions, thiol-ene reactions, Diels Alder reactions, etc.
are included in click reactions.
These reactions have very important features i.
e.
high functional group tolerance, formation of a single product, high atom economy, high yielding, no need for column purification, etc.
It also possesses several applications in drug discovery, supramolecular chemistry, material science, nanotechnology, etc.
Being highly significant and valuable, we have elaborated on several aspects of click reactions in organic synthesis in this chapter.
Recent advancements in the field of organic synthesis using click chemistry approach have been deliberated by citing last five years articles.
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