The Synthesis and Structural Characterization of Main Group and Transition Metal Complexes Supported by Nitrogen Based Ligands

The Synthesis and Structural Characterization of Main Group and Transition Metal Complexes Supported by Nitrogen Based Ligands
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Total Pages:
Release: 2001
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Nitrogen based monodentate and bidentate chelating ligands have captured a significant interest due to their ability to coordinate to a wide variety of elements. The â-diketimine, â-ketoiminato, formamidine, pyridineselenolate, and pyrazinecarboxamide ligands have all been employed in this study to further investigate the coordination preferences among main group and transition metals. Steric and electronic properties of these ligands can easily be altered by manipulating the substituents attached, thus leading to predictable structures with potential for many useful and significant applications. Investigations have shown that temperature, solvent, and metal halide employed are all key factors in the reaction outcomes. All of the complexes obtained throughout these studies have been characterized by X-ray crystallography along with other spectroscopic techniques, including NMR, IR, UV/Vis, and M/S. â-diketiminato ligands, [{N(R)C(Me)}2C(H)] where R = Dipp, Mes, commonly referred to as nacnac, have played an important role in the synthesis of novel pnictogenium complexes. Results show that through manipulation of the halide precursor, reaction stoichiometry, and the R substituent on the nacnac both N, N'- and N, C'-metal chelated complexes can be achieved. Additionally, â-ketiminato ligands, [RN(H)(C(Me))2C(Me)=O] where R = Dipp, and [RN(H)C(Me)CHC(Me)=O] where R = C2H4NEt2, have been studied. Both ligands were investigated with a range of d and p block metal halides and alkyls in order to compare and contrast the bulky, flexible, and even multi-dentate nature of each ligand. The preferred metal geometry remains constant for products with either ligand, but the steric protection offered by the individual ligands governs the nuclearity of the products, ranging from tetrameric cages to simple adducts. The formamidinate ligand, [RN(H)C(H)NR] where R = Dipp, was employed in synthesizing several aluminum and zinc complexes. In addition to their numerous applications as cata.

METAL COMPLEXATION OF NOVEL ORGANIC LIGANDS

METAL COMPLEXATION OF NOVEL ORGANIC LIGANDS
Author: Piyush Desai
Publisher: Lulu.com
Total Pages: 126
Release: 2013-12-31
Genre: Education
ISBN: 1304760138

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The present work is in connection with the novel ligands having structural moieties of heterocyclic rings such as benzotriazole and complex forming agent such as 8-hydroxy-quinoline and salicylic acid. Hence, both moieties have been introduced briefly.

Synthesis, Characterization and X-ray Structural Studies of Octahedral Transition Metal Complexes Incorporating the Novel Anionic Tridentate Ligand, Dimethyl(ethanolamino) (1-pyrazolyl)gallate, Me2Ga(OCH2CH2NH)(N2C3H3)

Synthesis, Characterization and X-ray Structural Studies of Octahedral Transition Metal Complexes Incorporating the Novel Anionic Tridentate Ligand, Dimethyl(ethanolamino) (1-pyrazolyl)gallate, Me2Ga(OCH2CH2NH)(N2C3H3)
Author: Kenneth S. Chong
Publisher:
Total Pages: 128
Release: 1978
Genre:
ISBN:

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Metal Mediated Template Synthesis of Ligands

Metal Mediated Template Synthesis of Ligands
Author: Otilia Costisor
Publisher: World Scientific
Total Pages: 316
Release: 2004
Genre: Science
ISBN: 9789812794819

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This book surveys the relatively new area of the synthesis of organic ligands when metal ions act as a template. In the last fifty years this field has undergone an explosive development, marked by a great amount of literature. The material in the book has been arranged according to the type of chemical reaction involved. In this frame, the basic principles of metal template reactions and the shape of the molecules are considered. Designed to satisfy the demands of students, young researchers doing their PhDs, and those working in the field of coordination chemistry, the book details the role of the metal ions and the specific properties of the formed complexes. Metal Mediated Template Synthesis of Ligands offers a comprehensive analysis with wide-ranging references and provides an extensive overview of research on metal-directed organic ligands over the past five decades. Contents: The Template Effect; Alkylation Reactions; Schiff Condensation; Mannich Condensation; Self Condensation of Nitriles; Self-Assembled Systems. Readership: Upper level undergraduates, graduate students, academics, researchers industrialists in inorganic, solid-state, supramolecular and organic chemistry.