Abstract
The present review provides a comprehensive summary of microwave-assisted preparation of five-membered azaheterocyclic systems, such as pyrrole, pyrazole, imidazole, triazole, thiazole, isothiazole, oxazole, isoxazole, oxadiazole, thiadiazole and tetrazole.
Keywords: Azaheterocycles, Microwave, Synthesis, Ene reaction, Heck reaction, Suzuki reaction, Mannich reaction, β-lactams, hydrolysis, dehydration, esterification, cycloaddition, epoxidation, reduction, condensation
Current Organic Chemistry
Title:Microwave Assisted Synthesis of Five Membered Azaheterocyclic Systems
Volume: 16 Issue: 6
Author(s): Rajeev Sakhuja, Siva S. Panda, Kiran Bajaj
Affiliation:
Keywords: Azaheterocycles, Microwave, Synthesis, Ene reaction, Heck reaction, Suzuki reaction, Mannich reaction, β-lactams, hydrolysis, dehydration, esterification, cycloaddition, epoxidation, reduction, condensation
Abstract:
The present review provides a comprehensive summary of microwave-assisted preparation of five-membered azaheterocyclic systems, such as pyrrole, pyrazole, imidazole, triazole, thiazole, isothiazole, oxazole, isoxazole, oxadiazole, thiadiazole and tetrazole.
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Cite this article as:
Rajeev Sakhuja, Siva S. Panda, Kiran Bajaj , Microwave Assisted Synthesis of Five Membered Azaheterocyclic Systems, Current Organic Chemistry 2012; 16 (6) . https://dx.doi.org/10.2174/138527212799958011
DOI https://dx.doi.org/10.2174/138527212799958011 |
Print ISSN 1385-2728 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5348 |
Call for Papers in Thematic Issues
Catalytic C-H bond activation as a tool for functionalization of heterocycles
The major topic is the functionalization of heterocycles through catalyzed C-H bond activation. The strategies based on C-H activation not only provide straightforward formation of C-C or C-X bonds but, more importantly, allow for the avoidance of pre-functionalization of one or two of the cross-coupling partners. The beneficial impact of ...read more
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