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An investigation was undertaken of the coordinating properties of flexible tetradentate phosphorus, arsenic, and nitrogen ligands of the type D(CH2CH2CH2D')3, (where D does not = D'). A series of nickel (II) complexes with the five coordinate (Ni(ligand)X)(+) cations was isolated and studied extensively. A number of Pd(II) and Co(II) complexes were also examined. A second series of studies involved the nature of bonding in boron-transition metal complexes having groups of the type B(OCH2CH2NR2). Also, the synthesis of a number of tetradentate compounds with boron-carbon bonds was undertaken (e.g., B(Ph-AsO2)3).
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ABSTRACT: The new acyclic tetradentate thioether ligand tetrakis[(methylthio)methyl]silane, has been synthesized with the goal of studying its coordination chemistry and comparing it with that of the recently prepared methyltris[(methylthio)methyl]silane, and other tridentate or tetradentate thioethers. This new tetradentate ligand was coordinated to the group 6 transition metals to give a complete series of thioether carbonyl complexes, where the sulfur ligand is bound to the metal center in either a bidentate or tridentate fashion. The dinuclear compounds were obtained from the reaction of LM(CO)4 and [Cu(NCMe)4]X (X = BF4 or PF6) in a 2:1 ratio, with the thioether serving as a bridging ligand between the two metals. Furthermore, six and seven-coordinated dihalo thioether complexes have also been prepared and structurally characterized.
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Schiff Base Metal Complexes Schiff bases are compounds created from a condensed amino compounds, which frequently form complexes with metal ions. They have diverse applications in biology, catalysis, material science and industry. Understanding these compounds, their properties, and the available methods for synthesizing them is a key to unlocking industrial innovation. Schiff Base Metal Complexes provides a comprehensive overview of these compounds. It introduces the compounds and their properties before discussing their various synthesizing methods. A survey of existing and potential applications gives a complete picture and makes this a crucial guide for researchers and industry professionals looking to work with Schiff base complexes. Schiff Base Metal Complexes readers will also find: A systematic and organized structure designed to make information instantly accessible Detailed coverage of thermal synthesis, photochemical synthesis, and more Challenges with different methods described in order to help readers make the correct choice for their own work Schiff Base Metal Complexes is a useful reference for organic chemists, materials scientists, and researchers or industry professionals working with organometallics.