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Quinoxalines: Synthesis, Reactions, Mechanisms And StructureQuinoxalines: Synthesis, Reactions, Mechanisms And StructureQuinoxalines: Synthesis, Reactions, Mechanisms And Structure

Quinoxalines: Synthesis, Reactions, Mechanisms And Structure in Vernon, BC

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Current price: $160.95
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Quinoxalines: Synthesis, Reactions, Mechanisms And Structure

Coles

Quinoxalines: Synthesis, Reactions, Mechanisms And Structure in Vernon, BC

By None

Current price: $160.95
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Size: Hardcover

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This book reviews the fundamental aspects of quinoxaline chemistry: synthesis, reactions, mechanisms, structure, properties, and uses. The first four chapters present a survey of the developments in quinoxaline chemistry since the publication of the monograph on "Condensed Pyrazines" by Cheeseman and Cookson in 1979. These chapters give comprehensive coverage of all the methods of the synthesis of quinoxalines and  the important quinoxaline-containing ring systems such as thiazolo[3,4- a ]-, pyrrolo[1,2- a ]-, and imidazo[1,5- a]quinoxalines. Chapter five describes many new methods for the construction of quinoxaline macrocycles, which are important in applications such as optical devices and materials. The final chapter reviews all previously known rearrangements of heterocyclic systems that lead to benzimidazole derivatives. Mamedov critically analyses these transformations to reveal a novel acid-catalyzed rearrangement of quinoxalinones giving 2-heteroarylbenzimidazoles and 1-heteroarylbenzimidazolones in the presence of nucleophilic reactants (MAMEDOV Heterocycle Rearrangement). This book is of interest to researchers in the fields of heterocyclic and synthetic organic chemistry.
This book reviews the fundamental aspects of quinoxaline chemistry: synthesis, reactions, mechanisms, structure, properties, and uses. The first four chapters present a survey of the developments in quinoxaline chemistry since the publication of the monograph on "Condensed Pyrazines" by Cheeseman and Cookson in 1979. These chapters give comprehensive coverage of all the methods of the synthesis of quinoxalines and  the important quinoxaline-containing ring systems such as thiazolo[3,4- a ]-, pyrrolo[1,2- a ]-, and imidazo[1,5- a]quinoxalines. Chapter five describes many new methods for the construction of quinoxaline macrocycles, which are important in applications such as optical devices and materials. The final chapter reviews all previously known rearrangements of heterocyclic systems that lead to benzimidazole derivatives. Mamedov critically analyses these transformations to reveal a novel acid-catalyzed rearrangement of quinoxalinones giving 2-heteroarylbenzimidazoles and 1-heteroarylbenzimidazolones in the presence of nucleophilic reactants (MAMEDOV Heterocycle Rearrangement). This book is of interest to researchers in the fields of heterocyclic and synthetic organic chemistry.

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