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Paperback Sustainable C-H Functionalization and Carboxylation Development Book

ISBN: B0CM7NDPLW

ISBN13: 9798868943751

Sustainable C-H Functionalization and Carboxylation Development

The development of sustainable C-H functionalization and carboxylation reactions is an important area of research in green chemistry and organic synthesis. This field aims to design and optimize reactions that use readily available and abundant carbon sources, such as alkanes, alkenes, and aromatics, to synthesize valuable compounds like pharmaceuticals, agrochemicals, and natural products. Catalysis plays a key role in this field, with metal catalysts being widely used to activate C-H bonds and enable carboxylation reactions with carbon dioxide as a feedstock. Catalyst and ligand design are critical factors in achieving high selectivity, yield, and scalability in these reactions, while minimizing safety hazards and toxicity issues. Reaction mechanisms, stereochemistry, and regioselectivity are also important considerations. Biorenewable feedstocks, such as biomass and waste streams, are increasingly being explored as alternative carbon sources for C-H functionalization and carboxylation reactions. Renewable energy sources like hydrogen, electricity, and solar energy can be used to power these reactions, making them more sustainable and environmentally friendly. Various oxidants and reagents, such as heterocycles, esters, and amides, can also be used in these reactions to facilitate functionalization and carboxylation processes. Fine chemicals with high value can be produced with atom economy in mind, minimizing waste and maximizing the efficiency of these reactions. Other factors that are important to consider in the development of sustainable C-H functionalization and carboxylation reactions include reaction conditions, such as temperature, pressure, and time, as well as the use of alternative energy sources like microwave irradiation, ultrasound, photochemistry, and electrochemistry. Solvents play a crucial role in these reactions, and greener alternatives are being developed to minimize environmental impact. Overall, the development of sustainable C-H functionalization and carboxylation reactions is an important area of research that has the potential to revolutionize the way we produce valuable chemicals while minimizing environmental impact and reducing our dependence on non-renewable resources. The work of researchers like Samir Kumar is essential in advancing this field and making it a reality.

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