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This book emphasizes the atom economy aspect of multicomponent reactions. It describes how this methodology has been applied to several named reactions. Among the “twelve principles of green chemistry”, atom economy addresses ‘synthetic efficiency’. A multicomponent reaction can be defined as an energy, cost, and time efficient method for organic synthesis. Instead of making one or two bonds in a chemical transformation, multicomponent reactions generate several chemical bonds in a single operation. This book presents a series of detailed reaction mechanisms that beautifully illustrate this…mehr
This book emphasizes the atom economy aspect of multicomponent reactions. It describes how this methodology has been applied to several named reactions. Among the “twelve principles of green chemistry”, atom economy addresses ‘synthetic efficiency’. A multicomponent reaction can be defined as an energy, cost, and time efficient method for organic synthesis. Instead of making one or two bonds in a chemical transformation, multicomponent reactions generate several chemical bonds in a single operation. This book presents a series of detailed reaction mechanisms that beautifully illustrate this principle. Multicomponent reactions are widely applied to the preparation of complex and diverse molecular structures in academic and industrial research laboratories. As such, this book is targeted at researchers involved in green organic chemistry.
Wei Zhang, Ph.D. Associate Professor Department of Chemistry University of Massachusetts Boston HIGHLIGHTS Research areas: fluorous technology, medicinal chemistry, chemical library synthesis, free radical chemistry, and green chemistry The 3rd most published author in fluorous chemistry (after D. P. Curran and J. A. Gladysz) Over 140 publications including 3 Chemical Reviews and 3 Tetrahedron Reports articles Over 2,900 citations (H-Index 30), the top 1% of the cited authors for journals in the Life Sciences.
Inhaltsangabe
Multicomponent reaction.- Introduction.- The Ugi reaction.- The passerini reaction.- The Strecker reaction.- The Hantzsch reaction.- The Biginelli raction.- Other Style reaction.- One-pot synthesis.- Introduction.- Various Catalyst.- Cascade reactions.- Introduction.- Application.- Classification.
Multicomponent reaction.- Introduction.- The Ugi reaction.- The passerini reaction.- The Strecker reaction.- The Hantzsch reaction.- The Biginelli raction.- Other Style reaction.- One-pot synthesis.- Introduction.- Various Catalyst.- Cascade reactions.- Introduction.- Application.- Classification.
Multicomponent reaction.- Introduction.- The Ugi reaction.- The passerini reaction.- The Strecker reaction.- The Hantzsch reaction.- The Biginelli raction.- Other Style reaction.- One-pot synthesis.- Introduction.- Various Catalyst.- Cascade reactions.- Introduction.- Application.- Classification.
Multicomponent reaction.- Introduction.- The Ugi reaction.- The passerini reaction.- The Strecker reaction.- The Hantzsch reaction.- The Biginelli raction.- Other Style reaction.- One-pot synthesis.- Introduction.- Various Catalyst.- Cascade reactions.- Introduction.- Application.- Classification.
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