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Du Y. Non-Metal Catalyzed Synthesis. Green Bioactive Heterocycles 2024
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Non-metal catalysis may provide new and green methods for obtaining bioactive heterocycles. Many catalysts contain metals, which can be toxic, energy intensive to remove, and require mining of the source materials. By utilizing metal-free catalysts we avoid these issues. This book explores the use of non-metal catalysts when synthesizing various heterocyclic structures with bioactivity.
Discusses non-metal catalysis for producing bioactive heterocycles.
Catalysts explored include iodine-based catalysts, DABCO, DBU, L-proline, and more.
Organocatalytic dynamic kinetic resolution in the total synthesis of bioactive heterocycles
Organophotoredox-catalyzed synthesis of bioactive heterocycles
Synthesis of imidazo[1,2-a]pyridines and indazole under metal-free conditions
Microwave-assisted metal-free solid-support-catalyzed synthesis of bioactive heterocycles
Graphene oxide (GO): an efficient and recyclable catalyst for one-pot synthesis of bioactive heterocycles
L-Proline-catalyzed green synthesis of functional N-heterocycles
Molecular iodine-catalyzed synthesis of N-heterocycles and some important organic transformations
The aryl iodine-catalyzed synthesis of bioactive heterocycles via hypervalent iodine species generated in situ
Hypervalent iodine-mediated synthesis of biologically important heterocycles via dearomatization of phenols
Hypervalent iodine-mediated synthesis of biologically important nitrogenand oxygen-containing heterocycles
Synthesis of bioactive heterocycles involving λ3-hypervalent iodine