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Description
Synthesis of Six- and Seven-Membered Heterocycles: The Role of DMF and its Synthesis compares different synthetic approaches using DMF along with the advantages and disadvantages of those reactions while discussing the green methods and the sustainability of the reported synthetic methodologies especially the microwave methods.
This book presents several methodologies for the synthesis of six- and seven-membered heterocyclic compounds using dimethylformamide and the readers will defiantly gain knowledge about the topic. This book has the most up-to-date information in this fast-moving field and would provide a more updated and comprehensive approach for the synthesis of six- and seven-membered heterocyclic compounds, which are particularly challenging.
It is expected that DMF is satisfactorily impressive that will draw the attention of synthetic organic chemists and will initiate further developments in the uses of dimethylformamide beyond being just a polar solvent as there is so much more with a slight revolution. It can be expected that the use of dimethylformamide as a precursor will continue to grow in organic synthesis with the concern in sustainable and green chemistry.
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Synthesis of Six- and Seven-Membered Heterocycles: The Role of DMF and its Synthesis compares different synthetic approaches using DMF along with the advantages and disadvantages of those reactions while discussing the green methods and the sustainability of the reported synthetic methodologies especially the microwave methods.
This book presents several methodologies for the synthesis of six- and seven-membered heterocyclic compounds using dimethylformamide and the readers will defiantly gain knowledge about the topic. This book has the most up-to-date information in this fast-moving field and would provide a more updated and comprehensive approach for the synthesis of six- and seven-membered heterocyclic compounds, which are particularly challenging.
It is expected that DMF is satisfactorily impressive that will draw the attention of synthetic organic chemists and will initiate further developments in the uses of dimethylformamide beyond being just a polar solvent as there is so much more with a slight revolution. It can be expected that the use of dimethylformamide as a precursor will continue to grow in organic synthesis with the concern in sustainable and green chemistry.
Reviews