Advances in Solvent-Free Synthesis: Environmental Impact and Applications in Medicinal Chemistry

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Autores principales: Upadhyay, Saurabh Kumar, Verma, Prof (Dr.) Vikas, Vishwakarma, Prof (Dr.) Ashish, Dubey, Dr. Shailendra Kumar
Formato: Recurso digital
Publicado: Zenodo 2024
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author Upadhyay, Saurabh Kumar
Verma, Prof (Dr.) Vikas
Vishwakarma, Prof (Dr.) Ashish
Dubey, Dr. Shailendra Kumar
author_facet Upadhyay, Saurabh Kumar
Verma, Prof (Dr.) Vikas
Vishwakarma, Prof (Dr.) Ashish
Dubey, Dr. Shailendra Kumar
contents <p><strong><span>Abstract</span></strong></p> <p><span>This study investigates the impact of solvent-free synthesis methods on medicinal chemistry, emphasizing their role in promoting sustainability and innovation. Using secondary data analysis, the research evaluates the efficiency, mechanisms, and environmental benefits of solvent-free reactions in synthesizing biologically active compounds. Results highlight the effectiveness of techniques such as microwave-assisted synthesis and mechanochemical activation in reducing chemical hazards and energy consumption. The study identifies applications in drug development, energy storage, and green manufacturing, demonstrating the versatility of this method. Challenges, including scalability and the need for novel methodologies, are also addressed. The findings contribute to the understanding of solvent-free synthesis as a vital tool in achieving sustainable chemical processes, offering insights for its broader application in pharmaceutical industries. By exploring the benefits and limitations, the research paves the way for advancements in green chemistry, ensuring environmental and economic sustainability in future innovations.</span></p>
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spellingShingle Advances in Solvent-Free Synthesis: Environmental Impact and Applications in Medicinal Chemistry
Upadhyay, Saurabh Kumar
Verma, Prof (Dr.) Vikas
Vishwakarma, Prof (Dr.) Ashish
Dubey, Dr. Shailendra Kumar
Keywords: Solvent-free reactions, Sustainable innovation, Drug development, Mechanochemical activation, Green drug design.
<p><strong><span>Abstract</span></strong></p> <p><span>This study investigates the impact of solvent-free synthesis methods on medicinal chemistry, emphasizing their role in promoting sustainability and innovation. Using secondary data analysis, the research evaluates the efficiency, mechanisms, and environmental benefits of solvent-free reactions in synthesizing biologically active compounds. Results highlight the effectiveness of techniques such as microwave-assisted synthesis and mechanochemical activation in reducing chemical hazards and energy consumption. The study identifies applications in drug development, energy storage, and green manufacturing, demonstrating the versatility of this method. Challenges, including scalability and the need for novel methodologies, are also addressed. The findings contribute to the understanding of solvent-free synthesis as a vital tool in achieving sustainable chemical processes, offering insights for its broader application in pharmaceutical industries. By exploring the benefits and limitations, the research paves the way for advancements in green chemistry, ensuring environmental and economic sustainability in future innovations.</span></p>
title Advances in Solvent-Free Synthesis: Environmental Impact and Applications in Medicinal Chemistry
topic Keywords: Solvent-free reactions, Sustainable innovation, Drug development, Mechanochemical activation, Green drug design.
url https://doi.org/10.5281/zenodo.14650284