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OverviewCoordination chemistry plays an important role in the designing of inorganic metal complexes, materials, organo-synthesis, biological systems and catalysis. In A CLOSER LOOK AT COORDINATION COMPLEXES, novel and evolving developments in the field have been described. The book includes chapters on the synthesis of coordination compounds using different ligand combinations (Schiff base ligands, phosphines, thiolates, ligands with N- and S-donors and so on), biological relevance and catalytic applications of the reported metal complexes. Different aspects of metal complexes, viz. structural and coordination properties of the ligands and complexes and applications viz., asymmetric organic transformations, potential anticancer agents, antibacterial-antioxidant-antifungal properties, alkenes epoxidation, olefins polymerisation, nitrogen reduction, hydrogen evolution and oxidation and mercury poisoning treatment reviewed by the authors have been delineated in the eight chapters of the book. Full Product DetailsAuthor: Sandeep Kaur-GhumaanPublisher: Nova Science Publishers Inc Imprint: Nova Science Publishers Inc Weight: 0.948kg ISBN: 9781685070946ISBN 10: 1685070949 Pages: 438 Publication Date: 01 December 2021 Audience: General/trade , General Format: Hardback Publisher's Status: Active Availability: Available To Order ![]() We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately. Table of ContentsPreface; Tripodal Ligands as Powerful Platforms for Designing New Catalysts; Salen, Salalen and Salan Metal Complex Catalysed Asymmetric Organic Transformations; Catalytic Applications and Biological Significance of Coordination Complexes Incorporating Schiff Bases; 1,1-Dithio Ligand-Based Copper(II) Complexes with Potential Biological Applications; Advances in Transition Metal Catalyzed Olefin Polymerization; Synthetic Outer Coordination Sphere: A Key Feature for Designing Enzyme-Inspired H2 Production Catalysts; Hydrogenase Biomimetics as Catalysts for the Hydrogen Oxidation Reaction (HOR); Activation of Mercury-C Bond by N-Heterocyclic-Based Thiones and Selones: A Structural Overview; Index.ReviewsAuthor InformationSandeep Kaur-Ghumaan, PhD Associate Professor, University of Delhi, India Tab Content 6Author Website:Countries AvailableAll regions |