Synthesis, and Structural and Catalytic Investigation of N-heterocyclic Carbene Metal Complexes Derived from Electron-rich Alkoxybenzimidazolin-2-ylidenes

Synthesis, and Structural and Catalytic Investigation of N-heterocyclic Carbene Metal Complexes Derived from Electron-rich Alkoxybenzimidazolin-2-ylidenes
Author: Peter Vernon Simpson
Publisher:
Total Pages:
Release: 2010
Genre: Carbenes (Methylene compounds)
ISBN:

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This thesis presents an investigation into the synthesis, properties and application of a series of transition metal complexes bearing N-heterocyclic carbene ligands. There were four main areas of focus: the synthesis of alkoxy functionalised benzimidazolium salts and the assessment of their electron-donating abilities; the synthesis of transition metal complexes bearing electron-rich N-heterocyclic carbene ligands, and an investigation of their properties; an investigation into the catalytic activity of the palladium and rhodium complexes; and a preliminary study into the possibility of immobilising a palladium- NHC complex onto silica gel for use as a solid-supported heterogeneous catalyst. Various butoxy-functionalised benzimidazolium salts, including mono- (benzimidazolium) salts, bis(benzimidazolium) salts and benzimidazolium cyclophanes were prepared as precursors to electron rich NHC-metal complexes. Preparation of the (NHC)RhI(CO)2 complexes I - III and subsequent analysis by IR spectroscopy confirmed the increased electron richness of the butoxy-functionalised NHCs compared to the non-butoxy-functionalised analogues. Some of the benzimidazolium salts were used to prepare Ag(I)-NHC complexes for the purpose of transmetallation agents. Treatment of the Ag(I)-NHC complex IV with [RuCl2(p-cymene)]2 yielded the dinuclear cationic Ru(II)-NHC complex V, which exhibits !2-binding of the quaternary carbons of each xylyl ring to the Ru centre. This unique complex was also converted to the hexafluorophosphate complex in excellent yields. A range of Pd(II)-NHC complexes were synthesized. The complexes possessed mono(NHC), chelating bis(NHC) (bridged on one or both sides), and mixed NHC/ancillary ligand systems, in order to assess the most favourable structural characteristics of a potential catalyst. Reaction of the bis(benzimidazolium) salt VI with Pd(OAc)2 gave two complexes, VII and VIII, which were subsequently isolated. The unusual complex VII, in which the xylyl ring is folded under the metal centre, was found to isomerise to IX over approximately twenty-six days in CDCl3. The conformations of the xylyl ring in VII and IX was confirmed using selective NOESY experiments. Two trans-o-xylyl-linked Pd(II)-NHC complexes were prepared and characterised, and represent the only fully characterised complexes of this type. During efforts to synthesize the dinitrophenyl-functionalised bis(NHC)-Pd(II) complex X under strict anhydrous and anaerobic conditions, instead, the trinuclear Abstract v palladium complex XI was isolated, where one dinitrophenyl group of each ligand has been displaced, presumably by attack from adventitious water or acetate present in the reaction mixture. Pd N N N N Br. Many of the Pd(II)-NHC complexes were tested in an extensive set of experiments designed to provide an insight into favourable structural motifs for a potential catalyst and confirm the beneficial nature of the electron donating butoxy groups. It was found that the Pd(II)-NHC complexes possessing chelating bis(NHC) ligands were the most active in the Mizoroki-Heck and Suzuki-Miyaura cross-coupling reactions, possibly due to the robustness of these complexes at the temperatures necessary to promote the reactions. Gratifyingly, the complexes possessing butoxy groups were found to be more active than the non-butoxy-functionalised analogues.

N-Heterocyclic Carbenes in Transition Metal Catalysis

N-Heterocyclic Carbenes in Transition Metal Catalysis
Author: Frank Glorius
Publisher: Springer Science & Business Media
Total Pages: 241
Release: 2007
Genre: Science
ISBN: 3540369295

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In this book leading experts have surveyed major areas of application of NHC metal complexes in catalysis. The authors have placed a special focus on nickel- and palladium-catalyzed reactions, on applications in metathesis reactions, on oxidation reactions and on the use of chiral NHC-based catalysts. This compilation is rounded out by an introductory chapter and a chapter dealing with synthetic routes to NHC metal complexes.

Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis Vol. 1

Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis Vol. 1
Author: Steven Nolan
Publisher: Thieme
Total Pages: 807
Release: 2017-06-14
Genre: Science
ISBN: 3132013315

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The field of N-heterocyclic carbenes, whether in transition-metal catalysis or organocatalysis, is rapidly evolving towards applications, but is also still very active on the catalyst development front. Significant advances have been made over the past two decades and the development of these reactions has dramatically improved the efficiency of organic synthesis. N-Heterocyclic carbene based catalysts are now widely applied in the area of synthesis of both natural products and therapeutic agents. Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis presents the most commonly used and significant metal- or non-metal-catalyzed reactions for modern organic synthesis. The basic principles and current state-of-the-art of the methods are covered. Scope, limitations, and mechanism of these reactions are discussed and key experimental procedures are included. Typical examples of target synthesis are often provided to show the utility and inspire further applications.

Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis Vol. 2

Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis Vol. 2
Author: Steven Nolan
Publisher: Thieme
Total Pages: 816
Release: 2017-06-14
Genre: Science
ISBN: 3132414034

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The field of N-heterocyclic carbenes, whether in transition-metal catalysis or organocatalysis, is rapidly evolving towards applications, but is also still very active on the catalyst development front. Significant advances have been made over the past two decades and the development of these reactions has dramatically improved the efficiency of organic synthesis. N-Heterocyclic carbene based catalysts are now widely applied in the area of synthesis of both natural products and therapeutic agents. "Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis" presents the most commonly used and significant metal- or non-metal-catalyzed reactions for modern organic synthesis. The basic principles and current state-of-the-art of the methods are covered. Scope, limitations, and mechanism of these reactions are discussed and key experimental procedures are included. Typical examples of target synthesis are often provided to show the utility and inspire further applications.

N-Heterocyclic Carbenes

N-Heterocyclic Carbenes
Author: Silvia Diez-Gonzalez
Publisher: Royal Society of Chemistry
Total Pages: 636
Release: 2016-11-08
Genre: Science
ISBN: 1782624236

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In less than 20 years N-heterocyclic carbenes (NHCs) have become well-established ancillary ligands for the preparation of transition metal-based catalysts. This is mainly due to the fact that NHCs tend to bind strongly to metal centres, avoiding the need of excess ligand in catalytic reactions. Also, NHC‒metal complexes are often insensitive to air and moisture, and have proven remarkably resistant to oxidation. This book showcases the wide variety of applications of NHCs in different chemistry fields beyond being simple phosphine mimics. This second edition has been updated throughout, and now includes a new chapter on NHC‒main group element complexes. It covers the synthesis of NHC ligands and their corresponding metal complexes, as well as their bonding and stereoelectronic properties and applications in catalysis. This is complemented by related topics such as organocatalysis and biologically active complexes. Written for organic and inorganic chemists, this book is ideal for postgraduates, researchers and industrialists.

N-Heterocyclic Carbene-metal Complexes Derived from Imidazolium-linked Cyclophane and Biimidazolium Salts

N-Heterocyclic Carbene-metal Complexes Derived from Imidazolium-linked Cyclophane and Biimidazolium Salts
Author: Valerie Jane Hesler
Publisher:
Total Pages:
Release: 2008
Genre: Carbenes (Methylene compounds)
ISBN:

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This thesis presents an investigation into the synthesis of metal complexes of (Nheterocyclic carbene)-based cyclophanes. There were three main areas of focus: synthesis and complexation of bis(4,5-dihydroimidazolium) salts; the synthesis and complexation of phenol-functionalised imidazolium cyclophanes; and the synthesis and complexation of (N-heterocyclic carbene)-based cyclophanes by C-C bond activation of biimidazolium salts with electron-rich metals. The synthesis of xylyl-linked bis(4,5-dihydroimidazolium) salts was investigated. Attempts to prepare these compounds by the cyclisation of a tetraamine (linear or macrocyclic) were unsuccessful due difficulties in preparing the tetraamines. The target compounds could be prepared by adapting the methods developed for the synthesis of bis(imidazolium) salts however problems associated with purification and stability of the products prevented complexation studies. A series of phenol-, phenoxide- and anisole-functionalised imidazolium cyclophanes were prepared. Their structural properties were investigated using dynamic nmr studies and X-ray crystallography. Complexation of the functionalised cyclophanes was investigated. The phenol cyclophane I formed a dinuclear complex with mercury(II). This complex is the first example of a complex derived from a phenol-functionalised imidazolium cyclophane. However the anisole cyclophane II and the unsymmetrical phenol/ortho cyclophane III were unable to form complexes possibly due to steric hindrance and instability of the cyclophane respectively. Preliminary complexation studies of the bis(imidazolium)phenol V suggested that complexation with palladium(II) and mercury(II) were possible but more work is required to determine the optimum reaction conditions. A series of biimidazolium salts VI (both new and known) were prepared. Previously reported biimidazolium salts have very low solubility in common solvents therefore the incorporation of long alkyl chains to the bridging group was investigated as a means to improve the solubility. The structure of the salts was explored using a range of techniques including dynamic nmr spectroscopy, cyclic voltammetry, UV/Visible spectroscopy, X-ray crystallography and mass spectrometry. Some of the biimidazolium salts were able to rotate about the C2-C2' bond and the free energy of activation for this process was estimated using dynamic nmr studies. C-C bond activation of the biimidazolium salts with palladium(0) was used to form a series of palladium(II) complexes (VII) of (NHC)-based cyclophanes. These reactions are the first examples of the synthesis of bis(NHC) complexes by C-C bond activation. The reactivity of the biimidazolium salts with palladium(0) was compared to their solution structure and it was found that only the biimidazolium that were able to rotate about the C2-C2' bond could react with palladium(0).

N-Heterocyclic Carbenes in Synthesis

N-Heterocyclic Carbenes in Synthesis
Author: Steven P. Nolan
Publisher: John Wiley & Sons
Total Pages: 319
Release: 2006-12-13
Genre: Science
ISBN: 3527609407

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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.

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.

N-Heterocyclic Carbenes in Transition Metal Catalysis and Organocatalysis

N-Heterocyclic Carbenes in Transition Metal Catalysis and Organocatalysis
Author: Catherine S.J. Cazin
Publisher: Springer Science & Business Media
Total Pages: 348
Release: 2010-10-04
Genre: Science
ISBN: 9048128668

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N-Heterocyclic Carbenes in Transition Metal Catalysis and Organocatalysis features all catalytic reactions enabled by N-heterocyclic carbenes (NHCs), either directly as organocatalysts or as ligands for transition metal catalysts. An explosion in the use of NHCs has been reported in the literature during the past seven years making this comprehensive overview highly apropos. The book begins with an introductory overview of NHCs which could have been subtitled all you need to know about NHCs. The main body of the book is dedicated to applications of NHCs in catalysis. In addition to the success stories of NHCs in metathesis, NHCs in cross coupling and more recently NHCs in organocatalysis, all other less publicized areas are also covered. As the success of NHCs is generally attributed to their potential to stabilize metal centres, the inclusion of a chapter on the decomposition of NHC catalysts is pertinent. The book closes with a chapter describing the applications of NHCs in industrial processes, which is the first coverage of its kind, and brings a unique industrial context to this book. Included in this book: Historical aspects of NHCs Synthetic pathways to NHC precursors, free NHCs and complexes Methods of characterisation of NHCs and related complexes Electronic properties of NHCs Steric properties of NHCs and models for their description NHCs for metathesis and cross-coupling reactions NHCs as organocatalysts NHC Transition-Metal mediated oxidations, additions to multiple bonds, polymerisation and oligomerisation, cyclisations, direct arylations, reactions involving CO, C-F and C-H bond activation, ... Decomposition of NHC-containing catalysts Industrial applications involving NHC-containing catalysts N-Heterocyclic Carbenes in Transition Metal Catalysis and Organocatalysis provides a fresh view of NHCs since most contributors are young emerging researchers in the field of homogeneous catalysis using NHCs. This group of contributors is complemented by highly established academic researchers and an industrialist. This book is comprehensive, from the basic features of NHCs to the latest advances, hence it is suitable for both the novice and the expert.