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Book Synopsis

Non-conventional synthetic methods may provide new and green methods for the preparation of bioactive heterocycles. These methods, such as microwave and ultrasound assisted synthesis, biocatalysis, photochemistry and electrosynthesis use less energy and may produce less waste to get the desired products when compared to traditional methods. This book explores the use of these methods when synthesizing various biologically relevant heterocyclic scaffolds.

THE SERIES: GREEN BIOACTIVE HETEROCYCLES
Heterocycles are a widely utilized group of molecules as they often contain bioactivity that is useful in drug development, agriculture, and other applications. However, their synthesis remains challenging with diffi cult to control functional groups. With a greater focus on sustainable synthesis practices, there is a need to develop greener synthetic methods for the synthesis of structurally diverse bioactive heterocyclic scaffolds. This series aims to do so, by collecting developments into common themes.

Non-Conventional Synthesis: Bioactive Heterocycles

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    A Hardback by Gyorgy Keglevich, Bubun Banerjee

    15 in stock


      View other formats and editions of Non-Conventional Synthesis: Bioactive Heterocycles by Gyorgy Keglevich

      Publisher: De Gruyter
      Publication Date: 06/11/2023
      ISBN13: 9783110992267, 978-3110992267
      ISBN10:

      Description

      Book Synopsis

      Non-conventional synthetic methods may provide new and green methods for the preparation of bioactive heterocycles. These methods, such as microwave and ultrasound assisted synthesis, biocatalysis, photochemistry and electrosynthesis use less energy and may produce less waste to get the desired products when compared to traditional methods. This book explores the use of these methods when synthesizing various biologically relevant heterocyclic scaffolds.

      THE SERIES: GREEN BIOACTIVE HETEROCYCLES
      Heterocycles are a widely utilized group of molecules as they often contain bioactivity that is useful in drug development, agriculture, and other applications. However, their synthesis remains challenging with diffi cult to control functional groups. With a greater focus on sustainable synthesis practices, there is a need to develop greener synthetic methods for the synthesis of structurally diverse bioactive heterocyclic scaffolds. This series aims to do so, by collecting developments into common themes.

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