Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts PDF full book. Access full book title Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts by Evelyn Louise Rosen. Download full books in PDF and EPUB format.

Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts

Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts PDF Author: Evelyn Louise Rosen
Publisher:
ISBN:
Category :
Languages : en
Pages : 286

Book Description
With the ever expanding utility of transition metal catalysis, there has been a thrust both to develop catalysts with unique selectivites or activites, and to understand the factors which govern these characteristics at both a fundamental and practical level. Olefin metathesis has become an essential reaction for the synthesis of small molecules in addition to polymeric materials. We have pursued two distinct ligand classes based on diaminocarbenes with novel architectures to address specific limitations within this useful class of reactions: 1) limited access to polymeric materials with controlled microstructures and 2) poor stereoselectivity in Ru-catalyzed cross-metathesis (CM) reactions. Numerous phosphines and N-heterocyclic carbenes (NHCs) have been used as ligands for Ru metathesis catalysts, and the resulting activity is very sensitive to their steric and electronic nature. We envisioned that we could take advantage of this dependence by developing a catalyst with tunable ligand donicity. Redox-switchable ligands can lead to catalysts whose selectivity and/or activity are dependent upon the ligand oxidation state. Towards this purpose, we have developed a ligand which incorporates a 1,1'-disubstituted ferrocene moiety into the backbone of a diaminocarbene (FcDAC). Upon ligation of FcDAC to various transition metals, we were able to use cyclic voltammetry and a spectroelectrochemical FT-IR experiment to show electronic communication between FcDAC and the coordinated metal. We then pursued Ru metathesis catalysts incorporating these ligands. The ring-opening metathesis polymerization of 1,5-cyclooctadiene was studied using [(FcDAC)(PPh3)Cl2Ru=(3-phenylindenylid-2-ene)] as the catalyst. Chemical redox reactions were used to establish the ability of FcDAC to impart redox-tunable properties to Ru metathesis catalysts. A new ligand class pioneered in our group, N-aryl, N-alkyl acyclic diaminocarbenes (ADCs), was also studied in various Ru metathesis catalysts. To our delight, these catalysts showed lower E : Z ratios than analogous NHC ligands in two representative CM reactions. We also investigated the conformational diversity of these differentially substituted ADCs given their ability to rotate about their C-N bonds, in particular, to determine how this might influence their donicity. Complexes of the type [(ADC)Ir(COD)Cl] and [(ADC)Ir(CO)2Cl] were studied, given the wealth of structural and spectral data available for analogous compounds incorporating related ligand classes. Different conformations resulted depending on the N-substituents and the nature of the metal complex. Interestingly, the electron donating ability of ADC ligands was found to depend on their conformation, as evidenced by FT-IR and cyclic voltammetry. This established a new avenue for tuning the donor properties of differentially substituted ADC ligands. The unique properties of these novel ligand classes were demonstrated in Ru metathesis catalysts. However, on a broader level, these ligands are expected to have utility in diverse catalytic applications.

Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts

Novel Diaminocarbene Ligands and Their Applications in Ruthenium-based Metathesis Catalysts PDF Author: Evelyn Louise Rosen
Publisher:
ISBN:
Category :
Languages : en
Pages : 286

Book Description
With the ever expanding utility of transition metal catalysis, there has been a thrust both to develop catalysts with unique selectivites or activites, and to understand the factors which govern these characteristics at both a fundamental and practical level. Olefin metathesis has become an essential reaction for the synthesis of small molecules in addition to polymeric materials. We have pursued two distinct ligand classes based on diaminocarbenes with novel architectures to address specific limitations within this useful class of reactions: 1) limited access to polymeric materials with controlled microstructures and 2) poor stereoselectivity in Ru-catalyzed cross-metathesis (CM) reactions. Numerous phosphines and N-heterocyclic carbenes (NHCs) have been used as ligands for Ru metathesis catalysts, and the resulting activity is very sensitive to their steric and electronic nature. We envisioned that we could take advantage of this dependence by developing a catalyst with tunable ligand donicity. Redox-switchable ligands can lead to catalysts whose selectivity and/or activity are dependent upon the ligand oxidation state. Towards this purpose, we have developed a ligand which incorporates a 1,1'-disubstituted ferrocene moiety into the backbone of a diaminocarbene (FcDAC). Upon ligation of FcDAC to various transition metals, we were able to use cyclic voltammetry and a spectroelectrochemical FT-IR experiment to show electronic communication between FcDAC and the coordinated metal. We then pursued Ru metathesis catalysts incorporating these ligands. The ring-opening metathesis polymerization of 1,5-cyclooctadiene was studied using [(FcDAC)(PPh3)Cl2Ru=(3-phenylindenylid-2-ene)] as the catalyst. Chemical redox reactions were used to establish the ability of FcDAC to impart redox-tunable properties to Ru metathesis catalysts. A new ligand class pioneered in our group, N-aryl, N-alkyl acyclic diaminocarbenes (ADCs), was also studied in various Ru metathesis catalysts. To our delight, these catalysts showed lower E : Z ratios than analogous NHC ligands in two representative CM reactions. We also investigated the conformational diversity of these differentially substituted ADCs given their ability to rotate about their C-N bonds, in particular, to determine how this might influence their donicity. Complexes of the type [(ADC)Ir(COD)Cl] and [(ADC)Ir(CO)2Cl] were studied, given the wealth of structural and spectral data available for analogous compounds incorporating related ligand classes. Different conformations resulted depending on the N-substituents and the nature of the metal complex. Interestingly, the electron donating ability of ADC ligands was found to depend on their conformation, as evidenced by FT-IR and cyclic voltammetry. This established a new avenue for tuning the donor properties of differentially substituted ADC ligands. The unique properties of these novel ligand classes were demonstrated in Ru metathesis catalysts. However, on a broader level, these ligands are expected to have utility in diverse catalytic applications.

Ruthenium-based Olefin Metathesis Catalysts Coordinated with N-heterocyclic Carbene Ligands

Ruthenium-based Olefin Metathesis Catalysts Coordinated with N-heterocyclic Carbene Ligands PDF Author: John Philip Morgan
Publisher:
ISBN:
Category : Electronic dissertations
Languages : en
Pages : 296

Book Description


Studies Towards the Synthesis of Novel Tridentate Ligands for Use in Ruthenium Metathesis Catalysts

Studies Towards the Synthesis of Novel Tridentate Ligands for Use in Ruthenium Metathesis Catalysts PDF Author: Tanya Millward
Publisher:
ISBN:
Category : Catalysis
Languages : en
Pages : 244

Book Description


Ruthenium in Organic Synthesis

Ruthenium in Organic Synthesis PDF Author: Shun-Ichi Murahashi
Publisher: John Wiley & Sons
ISBN: 3527605797
Category : Science
Languages : en
Pages : 398

Book Description
In this comprehensive book, one of the leading experts, Shun-Ichi Murahashi, presents all the important facets of modern synthetic chemistry using Ruthenium, ranging from hydrogenation to metathesis. In 14 contributions, written by an international authorship, readers will find all the information they need about this fascinating and extraordinary chemistry. The result is a high quality information source and a indispensable reading for everyone working in organometallic chemistry. From the contents: Introduction (S.-I. Murahashi) Hydrogenation and Transfer Hydrogenation (M. Kitamura and R. Noyori) Oxidations (S.-I. Murahashi and N. Komiya) Carbon-Carbon Bond Formations via Ruthenacycle Intermediates (K. Itoh) Carbon-Carbon Bond Formation via pi-Allylruthenium Intermediates (T. Mitsudo) Olefin Metathesis (R. H. Grubbs) Cyclopropanation (H. Nishiyama) Nucleophilic Addition to Alkynes and Reactions via Vinylidene Intermediates (P. Dixneuf) Reactions via C-H Activation (N. Chatani) Lewis Acid Reactions (E. P. Kundig) Reactions with CO and CO2 (T. Mitsudo) Isomerization of Organic Substrates Catalyzed by Ruthenium Complexes (H. Suzuki) Radical Reactions (H. Nagashima) Bond Cleavage Reactions (S. Komiya)

Ligand Development Directed Towards Applications in Late Metal Catalysis

Ligand Development Directed Towards Applications in Late Metal Catalysis PDF Author: Christopher Charles Brown
Publisher:
ISBN:
Category :
Languages : en
Pages : 356

Book Description


Ligand Platforms in Homogenous Catalytic Reactions with Metals

Ligand Platforms in Homogenous Catalytic Reactions with Metals PDF Author: Ryohei Yamaguchi
Publisher: John Wiley & Sons
ISBN: 1118943090
Category : Technology & Engineering
Languages : en
Pages : 358

Book Description
Serving as a user's manual for synthetic organic and catalytic chemists, this book guides chemists in the design and choice of ligands to catalyze organic reactions and apply the results for more efficient, green, and practical synthesis. • Focuses on the role of ligands in metal complexes that catalyze green organic transformations: a hot topic in the area of organic synthesis and green chemistry • Offers a comprehensive resource to help readers design and choose ligands and understand selectivity/reactivity characteristics • Addresses a gap by taking novel ligand approaches and including up-to-date discussion on hydrogen transfers and reactions • Presents important industrial perspective and provides rational explanations of ligand effects, impacts, and novelty

Improving the Efficiency of Ruthenium-catalyzed Olefin Metathesis with Solid-supported Catalysts, Microfluidic Reactors, and Novel X-type Ligands

Improving the Efficiency of Ruthenium-catalyzed Olefin Metathesis with Solid-supported Catalysts, Microfluidic Reactors, and Novel X-type Ligands PDF Author: Matthew Martin Van Wingerden
Publisher:
ISBN:
Category : Alkenes
Languages : en
Pages : 288

Book Description


Design and Synthesis of Ruthenium Indenylidene-based Catalysts for Olefin Metathesis

Design and Synthesis of Ruthenium Indenylidene-based Catalysts for Olefin Metathesis PDF Author: César A. Urbina-Blanco
Publisher:
ISBN:
Category : Alkenes
Languages : en
Pages : 183

Book Description
As part of a European wide effort to develop metathesis catalysts for use in fine chemical and pharmaceutical compound synthesis, this study focuses on the design and synthesis of ruthenium based catalysts for olefin metathesis. The aim, of this work was simple: to develop new, more active, more stable, easy to synthesise and commercially viable Ruthenium based catalysts, as well trying to rationalize the effect of structural changes on reactivity. Two different approaches were explored in order to develop more active catalysts bearing N-heterocyclic carbene (NHC) ligands: changing the leaving group and the effect of the NHC moiety in indenylidene type complexes. Over 12 new catalysts were developed and their activity compared to that of commercially available catalysts. Overall, the new complexes exhibited superior reactivity compared to previously reported catalysts in several benchmark transformations. However, olefin metathesis is a very substrate specific reaction, and rather than finding one catalyst that is superior to all, a catalogue of catalysts suitable for specific transformations was developed. In addition, the effect of structural changes on substrate activity was investigated in the ring closing metathesis of 1,8-nonadienes. The reaction profiling showcased the presence of a gem-difluoro group as an accelerating group in this incarnation of the olefin metathesis reaction and leads to ring formation over polymerization. In order to rationalize the effect of structural changes on catalyst activity, kinetic studies dealing with the initiation mechanism of ruthenium-indenylidene complexes were examined and compared with that of benzylidene counterparts. It was discovered that not all indenylidene complexes followed the same mechanism, highlighting the importance of steric and electronic properties of so-called spectator ligands, and that there is no single mechanism for the ruthenium-based olefin metathesis reaction. These results highlight the importance of systematic development of catalysts and that as scientists we should not take for granted.

Development of New Chiral Diaminocarbene Ligands and Their Applications in Copper-catalyzed Reactions

Development of New Chiral Diaminocarbene Ligands and Their Applications in Copper-catalyzed Reactions PDF Author: Dimitri Hirsch-Weil
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
A novel acyclic diaminocarbene-copper complex has been prepared for the first time, conveniently from a chloroamidinium salt and Cu(I)-thiophenecarboxylate. The in situ generated acyclic diaminocarbene-Cu complex was characterized by 13C-NMR experiments using a 13C-labeled carbene precursor. The acyclic diaminocarbene-Cu complex is a highly efficient catalyst for SN2 ...-allylic alkylation with alkyl Grignard reagents, showing high SN2 ... selectivity. C1-symmetric monoisoquinoline based chiral diaminocarbene ligands were envisioned to expand the chiral pool of NHC structures and further optimize previously reported C2-symmetric biisoquinoline carbene ligands. This new ligand was synthesized from readily available chiral phenethylamine. The synthetic scheme allowed easy variation of the ligand structure within the final steps. Both C2 and C1-symmetric carbene ligands could be compared by their respective X-ray structures of Au(I) complexes. Monoisoquinoline based carbene ligand was tested in the copper-catalyzed borylation of ... ... unsaturated amides giving good yields (80-99%) and enantioselectivities (85%) for various substrates.

Ruthenium-based Olefin Metathesis Catalysts Bearing PH-responsive Ligands

Ruthenium-based Olefin Metathesis Catalysts Bearing PH-responsive Ligands PDF Author: Shawna Lynn Balof
Publisher:
ISBN:
Category : Catalysts
Languages : en
Pages : 306

Book Description