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Palladacycles: Catalysis and Beyond provides an overview of recent research in palladacycles in catalysis for cross-coupling and similar reactions. In the quest for developing highly efficient and robust palladium-based catalysts for C-C bond formation via cross-coupling reactions, palladacycles have played a significant role. In recent years, they have found a wide variety of applications, ranging from catalysts for cross-coupling and related reactions, to their more recent application as anticancer agents. This book explores early examples of the use of palladacyclic complexes in catalysis employing azobenzene and hydrazobenzene as coordinating ligands. Its applications in processes such as selective reduction of alkenes, alkynes, or nitroalkanes are also covered. Palladacycles: Catalysis and Beyond reveals the tremendous advances that have taken place in the potential applications of palladacycles as versatile catalysts in academia and industry. It is a valuable resource for synthetic chemists, organometallic chemists, and chemical biologists.--
Catalysis. --- Polycyclic compounds. --- Catalysis --- Polycyclic Compounds
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Carcinogens --- Polycyclic Compounds --- toxicity
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This book describes the design, synthesis, performance and practical application of energetic materials. The book consists of thirteen chapters demonstrating the design routes of nitrogen-rich polycyclic-based energetic materials that are bicyclic, tricyclic and tetracyclic-based. It presents the synthesis of the energetic backbone, the construction of linkage and the introduction of energetic units, which could have a positive impact on the chemistry of not only on high-energy-density materials but also in other fields. The book also provides detailed analysis of the experimental methods discussed. Work in this area will benefit from the combine expertise from organic, inorganic and physical chemistry as well as other connected disciplines. As such this book has wide appeal and will help in increasing fundamental knowledge of nitrogen-rich heterocycles to eventually allow for this knowledge to be transferred into industrial applications.
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Anthracyclines drugs are used as a treatment regime to combat cancer owing to their great chemotherapeutic potential. They are characterized by the presence of a wide range of derivatives, the most famous are doxorubicin and daunorubicin. The proposed action mechanism of anthracyclines and their derivatives to exert cytotoxic effect involves the intercalation of the drug molecule into nucleic acid and inhibition of the activity of topoisomerases. These events consequences in halting DNA replication and transcription mechanisms of the cell. Understanding of the structural and conformational changes associated with nucleic acid after binding with drugs provides significant knowledge for the development of more effective drugs. A comprehensive elucidation of the molecular mechanism(s) of action of anthracyclines drugs plays a significant role in the rational drug designing to obtain an effective, selective, and safe anti-cancer drugs.
Anthracyclines. --- Aminoglycosides --- Antineoplastic antibiotics --- Polycyclic compounds
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Aromatic compounds --- Chloro alkanes --- Explosives --- Polycyclic compounds
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Food contamination --- Polycyclic compounds --- Environmental pollutants --- analysis
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Air --- Polycyclic compounds --- Air Pollution. --- Lung Neoplasms --- Carcinogens. --- Polycyclic Compounds. --- Environmental Pollution. --- Polycyclic Compounds --- Pollution --- Physiological effect --- Toxicology --- etiology. --- adverse effects.
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Palladacycles: Catalysis and Beyond provides an overview of recent research in palladacycles in catalysis for cross-coupling and similar reactions. In the quest for developing highly efficient and robust palladium-based catalysts for C-C bond formation via cross-coupling reactions, palladacycles have played a significant role. In recent years, they have found a wide variety of applications, ranging from catalysts for cross-coupling and related reactions, to their more recent application as anticancer agents. This book explores early examples of the use of palladacyclic complexes in catalysis employing azobenzene and hydrazobenzene as coordinating ligands. Its applications in processes such as selective reduction of alkenes, alkynes, or nitroalkanes are also covered. Palladacycles: Catalysis and Beyond reveals the tremendous advances that have taken place in the potential applications of palladacycles as versatile catalysts in academia and industry. It is a valuable resource for synthetic chemists, organometallic chemists, and chemical biologists.--
Catalysis. --- Polycyclic compounds. --- Activation (Chemistry) --- Chemistry, Physical and theoretical --- Surface chemistry
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Carcinogenesis. --- Carcinogens, Environmental. --- Environmentally induced diseases. --- Hydrocarbons --- Polycyclic compounds --- Poisoning. --- Toxicology.
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