Synthesis and Structural Characterization of CCC-N-Heterocyclic Carbene (CCC-NHC) Pincer Complexes of Nickel

Synthesis and Structural Characterization of CCC-N-Heterocyclic Carbene (CCC-NHC) Pincer Complexes of Nickel
Author: Paul Jerome Kelley
Publisher:
Total Pages: 148
Release: 2010
Genre:
ISBN:

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Abstract: The recently reported methodology for concomitant triple C-H activation of a CCC-NHC pincer ligand precursor followed by transmetallation to late transition metals has been extended to include nickel. A very faint solid state fluorescence has been collected for the complexes reported. X-ray structural analysis of a representative compound exhibits a distorted square planar geometry. Issues with rapid halogen exchange have been found in some cases indicating increased liability of the halide ligand uncommon in comparable systems.

Design, Synthesis and Characterization of Chiral CCC-NHC Transition Metal Complexes and Catalytic Activity

Design, Synthesis and Characterization of Chiral CCC-NHC Transition Metal Complexes and Catalytic Activity
Author: Gopalakrishna Akurathi
Publisher:
Total Pages: 177
Release: 2016
Genre:
ISBN:

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The first stable "free" N-heterocyclic carbene (NHC) was isolated in 1991, since then many classes of NHCs were synthesized and isolated. N-heterocyclic carbene ligands have become a common ligand in the synthesis of metal complexes, due to their strong [Sigma]-donation with poor [pi]-acceptor ability. Among all the NHC metal complexes, Hollis group was interested in exploring CCC-NHC pincer complexes. In 2005, Hollis and co-workers synthesized and isolated first achiral CCC-NHC zirconium pincer amido complex and studied its catalytic ability to perform intramolecular hydroamination of aminoalkenes. Later, Hollis group designed and developed new NHCs with a saturated chiral backbone, and used these new ligands to generate a new series of metal complexes. This dissertation is focused on the design, synthesis and characterization of several chiral bi-dentate NHC ligands with varying substituents on the backbone. These NHC ligands were used to synthesize several chiral mono, bis and tris amido CCC-NHC zirconium pincer complexes. Further, transmetallation to cobalt complexes were achieved. Intramolecular hydroamination was measured for several chiral bis and tris amido CCC-NHC pincer zirconium catalysts. Variants of these catalytic systems were generated with differing steric hinderance and electronic structure. The enantioselectivity of these novel new molecules were studied.

N-heterocyclic Carbene Complexes of Ag(I) and Zr(IV)

N-heterocyclic Carbene Complexes of Ag(I) and Zr(IV)
Author: Wesley D. Clark
Publisher:
Total Pages: 317
Release: 2015
Genre:
ISBN:

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The synthesis and characterization of the first series of tetra-NHC-Ag(I)-X cubane clusters are reported. The clusters were characterized with 1H and 13C NMR spectroscopy, ESI-TOF MS, and single crystal X-ray diffraction. Crossover experimental data were consistent with intramolecular exchange, which can be visualized by a molecular rotating type mechanism. Additionally, CCC-NHC Zr(IV) pincer type complexes were synthesized and characterized with 1H and 13C NMR spectroscopy, CHN combustion analysis, and X-ray crystallography. A large rate effect was observed based on the halogen and metal center for the hydroamination/cyclization of unactivated aminoalkenes. Zirconium based pincers provided faster reaction rates than their hafnium counterparts (Zr>Hf). Precatalysts with iodide ligands provided faster reaction rates than their bromide and chloride counterparts (I>Br>Cl). The mechanism of hydroamination for Zr(IV) CCC-NHC complexes was also investigated for bis(iodide) and bis(amido) ligand classes. A full kinetic analysis of substrate and precatalyst have been identified along with the formation of small amounts of an oxidized product. The proposed mechanism contains an imido-type intermediate whose formation depends greatly on which set of ligand class is used.

Synthesis and Characterization of a CCC-NHC Manganese Complex and Its Catalytic Activity in Alpha-alkylation Reactions of Ketones Using Alcohols – Acceptorless Dehydrogenative Coupling Reaction

Synthesis and Characterization of a CCC-NHC Manganese Complex and Its Catalytic Activity in Alpha-alkylation Reactions of Ketones Using Alcohols – Acceptorless Dehydrogenative Coupling Reaction
Author: Thi Bao Tran Nguyen
Publisher:
Total Pages: 0
Release: 2021
Genre:
ISBN:

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N-heterocyclic carbenes are essential for the synthesis and stabilization of various metal complexes due to the tendency to act as sigma-donor of sp2 hybridized lone pair in carbene into sigma-accepting orbital of metals. Meanwhile, the electronic and steric properties of pincer complexes can be fine-tuned by modifying three sites bonded to the metals. Utilizing advantages of both NHCs and the pincer structures, NHCs-based pincer complexes have become increasingly developed in recent years. After the discovery of zirconium and rhodium complexes with CCC-NHC backbones reported in 2005, Hollis’s group has been interested in applying the CCC-NHC pincer precursor for other transition metals. Manganese, the third most abundant transition metal in the earth’s crust, has lower cost and less toxic features compared to most of the others. Herein, the CCC-NHCs manganese pincer complex is synthesized and characterized and its catalytic activity in alpha- alkylation reaction of ketones using alcohols was studied.

The Organometallic Chemistry of N-heterocyclic Carbenes

The Organometallic Chemistry of N-heterocyclic Carbenes
Author: Han Vinh Huynh
Publisher: John Wiley & Sons
Total Pages: 352
Release: 2017-02-03
Genre: Science
ISBN: 1118698797

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The Organometallic Chemistry of N-heterocyclic Carbenes describes various aspects of N-heterocyclic Carbenes (NHCs) and their transition metal complexes at an entry level suitable for advanced undergraduate students and above. The book starts with a historical overview on the quest for carbenes and their complexes. Subsequently, unique properties, reactivities and nomenclature of the four classical NHCs derived from imidazoline, imidazole, benzimidazole and 1,2,4-triazole are elaborated. General and historically relevant synthetic aspects for NHCs, their precursors and complexes are then explained. The book continues with coverage on the preparation and characteristics of selected NHC complexes containing the most common metals in this area, i.e. Ni, Pd, Pt, Ag, Cu, Au, Ru, Rh and Ir. The book concludes with an overview and outlook on the development of various non-classical NHCs beyond the four classical types. Topics covered include: Stabilization, dimerization and decomposition of NHCs Stereoelectronic properties of NHCs and their evaluation Diversity of NHCs Isomers of NHC complexes and their identification NMR spectroscopic signatures of NHC complexes normal, abnormal and mesoionic NHCs The Organometallic Chemistry of N-heterocyclic Carbenes is an essential resource for all students and researchers interested in this increasingly important and popular field of research.

N-Heterocyclic Carbenes in Synthesis

N-Heterocyclic Carbenes in Synthesis
Author: Steven P. Nolan
Publisher: John Wiley & Sons
Total Pages: 330
Release: 2006-10-27
Genre: Science
ISBN: 9783527314003

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This first handbook to focus solely on the application of N-heterocyclic carbenes in synthesis covers metathesis, organocatalysis, oxidation and asymmetric reactions, along with experimental procedures. Written by leading international experts this is a valuable and practical source for every organic chemist.

Pincer Compounds

Pincer Compounds
Author: David Morales-Morales
Publisher: Elsevier
Total Pages: 756
Release: 2018-04-11
Genre: Science
ISBN: 0128129328

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Pincer Compounds: Chemistry and Applications offers valuable state-of-the-art coverage highlighting highly active areas of research—from mechanistic work to synthesis and characterization. The book focuses on small molecule activation chemistry (particularly H2 and hydrogenation), earth abundant metals (such as Fe), actinides, carbene-pincers, chiral catalysis, and alternative solvent usage. The book covers the current state of the field, featuring chapters from renowned contributors, covering four continents and ranging from still-active pioneers to new names emerging as creative strong contributors to this fascinating and promising area. Over a decade since the publication of Morales-Morales and Jensen’s The Chemistry of Pincer Compounds (Elsevier 2007), research in this unique area has flourished, finding a plethora of applications in almost every single branch of chemistry—from their traditional application as very robust and active catalysts all the way to potential biological and pharmaceutical applications. Describes the chemistry and applications of this important class of organometallic and coordination compounds Includes contributions from global leaders in the field, featuring pioneers in the area as well as emerging experts conducting exciting research on pincer complexes Highlights areas of promising and active research, including small molecule activation, earth abundant metals, and actinide chemistry

Nickel Catalysis in Organic Synthesis

Nickel Catalysis in Organic Synthesis
Author: Sensuke Ogoshi
Publisher: John Wiley & Sons
Total Pages: 348
Release: 2020-03-09
Genre: Science
ISBN: 3527344071

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A comprehensive reference to nickel chemistry for every scientist working with organometallic catalysts Written by one of the world?s leading reseachers in the field, Nickel Catalysis in Organic Synthesis presents a comprehensive review of the high potential of modern nickel catalysis and its application in synthesis. Structured in a clear and assessible manner, the book offers a collection of various reaction types, such as cross-coupling reactions, reactions for the activation of unreactive bonds, carbon dioxide fixation, and many more. Nickel has been recognized as one of the most interesting transition metals for homogeneous catalysis. This book offers an overview to the recently developed new ligands, new reaction conditions, and new apparatus to control the reactivity of nickel catalysts, allowing scientists to apply nickel catalysts to a variety of bond-forming reactions. A must-read for anyone working with organometallic compounds and their application in organic synthesis, this important guide: -Reviews the numerous applications of nickel catalysis in synthesis -Explores the use of nickel as a relatively cheap and earth-abundant metal -Examines the versatility of nickel catalysis in reactions like cross-coupling reactions and CH activations -Offers a resource for academics and industry professionals Written for catalytic chemists, organic chemists, inorganic chemists, structural chemists, and chemists in industry, Nickel Catalysis in Organic Synthesis provides a much-needed overview of the most recent developments in modern nickel catalysis and its application in synthesis.

Synthesis, Characterisation and Analysis of Structurally Imposing Eight-membered Ring Heterocyclic Carbenes

Synthesis, Characterisation and Analysis of Structurally Imposing Eight-membered Ring Heterocyclic Carbenes
Author: Wei Lu
Publisher:
Total Pages:
Release: 2012
Genre:
ISBN:

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The work reported in this thesis is concerned with the preparation, metal coordination and catalytic applications of expanded eight-membered N-heterocyclic carbenes. This is divided into four chapters, which cover the following areas of research. Chapter One provides the historical and literature overview of synthesis, reactions and catalysis applications for the six- and seven-membered NHCs. Structure and electronic properties of the expanded ring NHC systems are also discussed and compared with their phosphine and five-membered NHC counterparts. Chapter Two focuses on the synthesis and characterisation of symmetrical, unsymmetrical and backbone functionalised eight-membered NHC halide salts and free carbenes. The precursor salts were all prepared by the amidine route while treatment with KHMDS forms the free NHCs. The 8-NHC ring adopts a boat conformation with the backbone folded over the central NHC carbon. Their N-CNHC-N angles are large, ranging between 129° and 131°, with the attendant CNHC-N-CN-substituent angles being very small. Chapter Three describes the synthesis and characterisation of a series of Ag(I), Rh(I), Ir(I) and Ni(I) complexes. Structural analysis of silver-(8-NHC) complexes reveal that these large rings cause the aromatic substituents on the ring nitrogens to bend around and essentially enclose the Ag centre. The percentage buried volume (%Vbur) of silver complexes increases considerably as the ring size expands from 5- to 8-membered NHC, reflecting the high steric demand imposed by the larger ring systems. It was also found that the 8-Mes ligand was too large to coordinate to the [Rh/IrCl(COD)]2 dimer, only the less sterically demanding 8-o-Tol was able to form stable [Rh/IrCl(8-o-Tol)(COD)] complexes. Comparison of CO stretching frequencies for [RhCl(NHC)(CO)2] complexes with 5-, 6-, 7- and 8-membered rings reveal that 8-o-Tol is the most basic of all the NHC ligands. A series of paramagnetic (8-NHC) Ni(I) complexes were prepared also, along with their characterization and EPR analysis. Chapter Four provides the results of catalytic performances for the 8-membered NHC rhodium and iridium complexes in the transfer hydrogenation of ketones. 8-NHC nickel complexes were also tested as catalysts in Suzuki and Kumada cross-coupling reactions.

N-Heterocyclic Carbenes

N-Heterocyclic Carbenes
Author: Steven P. Nolan
Publisher: John Wiley & Sons
Total Pages: 690
Release: 2014-07-07
Genre: Science
ISBN: 3527671242

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This comprehensive reference and handbook covers in depth all major aspects of the use of N-heterocyclic carbene-complexes in organic synthesis: from the theoretical background to characterization, and from cross-coupling reactions to olefin metathesis. Edited by a leader and experienced scientist in the field of homogeneous catalysis and use of NHCs, this is an essential tool for every academic and industrial synthetic chemist.