Development of Cationic Cobalt(I)-complexes for Enantioselective Cycloaddition and Hydrofunctionalization Reactions

Development of Cationic Cobalt(I)-complexes for Enantioselective Cycloaddition and Hydrofunctionalization Reactions
Author: Mahesh M. Parsutkar
Publisher:
Total Pages: 0
Release: 2021
Genre: Cobalt
ISBN:

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Developments of new catalytic transformations by using earth-abundant metal (base-metal) catalysts have played a significant role in modern civilization and will continue to play a vital role towards maintaining and improving our quality of life. Particularly, these transformations have had a tremendous impacts on the agricultural, transport, energy, and pharmaceutical sectors. This field of base-metal catalysis would enjoy added benefits with the utilization of sustainable feedstock carbon sources for fine chemical synthesis. However, the dual problems of activation of thermodynamically stable precursors (ethylene, CO2, H2, CO, aldehydes, acrylates, HCN) and their highly stereoselective incorporation into other readily available substrates (1,3-dienes, alkynes, enynes) pose new challenges. In a nutshell, the development of benign catalysts for employing sustainable feedstock starting materials has the potential to transform inexpensive materials into valuable precursors for fine chemical synthesis. My dissertation work focuses on the development of scalable, atom-economical, and cost-effective catalytic methods for the preparation of value-added products relevant to fine chemicals. The overarching aims are to use sustainable feedstocks or readily available precursors, and environmentally benign chemistry. To achieve these goals, three efficient catalytic methods have been developed which employ complexes of an earth-abundant metal, cobalt, with ligands derived from naturally occurring amino acids or commercially available bis-phosphine ligands. The key to success was a systematic ligands investigation that inspired the design and synthesis of novel ligands to achieve high chemo-, regio-, and enantioselectivities. In the first methodology, a broadly applicable method affecting [2+2] cycloaddition between several alkynes and alkenyl derivatives to form cyclobutenes has been disclosed. A library of >70 nearly enantiopure cyclobutenes, which are ubiquitous motifs in bioactive compounds, have been synthesized in excellent yields. In the second methodology, ligand controlled regio-divergent enantioselective synthesis of primary and secondary homoallylic boronates (>50 examples) from readily available 1,3-dienes and a common boron reagent have been developed. Furthermore, the hydrofunctionalization of 1,3-dienes program has been extended to unprecedented enantioselective hydroacylation of 1,3-dienes. This method opens a realm to achieve the synthesis of enantiopure alpha- or beta-chiral center containing ketones. In all the mentioned transformations above, cationic Co(I)- species has been invoked as an active catalyst. To further corroborate the role of cationic Co(I)-complexes, a reliable protocol has been developed to synthesize, isolate discrete neutral and cationic Co(I)-complexes and characterized by X-ray crystallography. These isolated cationic complexes serve as an excellent single-component catalyst for heterodimerization, hydroboration, and hydroacylation, suggesting the key role of cationic Co(I)-complexes in these transformations. While developing these efficient methodologies, striking ligand, counterion, and solvent effects have been revealed along with a unique role of a cationic Co(I) intermediate in the reactions which advanced novel fundamental concepts. We believe that these cationic Co(I) complexes have broader utility in homogeneous catalysis. We hope that the rational evolution of a mechanism-based strategy that led to the eventual successful outcome and the attendant support studies will add to the burgeoning organometallic chemistry of cobalt and its applications with further implications beyond the synthetic reactions described in this dissertation.

Cationic Cobalt(i)-mediated Heterodimerizations

Cationic Cobalt(i)-mediated Heterodimerizations
Author: Stanley M. Jing
Publisher:
Total Pages:
Release: 2017
Genre: Chemistry
ISBN:

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The use of abundantly available feedstock such as ethylene, carbon monoxide, hydrogen cyanide, alkyl acrylates, in fine chemical synthesis is a major challenge in organic synthesis, and developing asymmetric versions of reactions which makes use of these feedstock chemicals is an even bigger challenge. The detailed mechanism of a recently discovered cobalt-mediated hydrovinylation of prochiral dienes has been studied. The role of trimethyl aluminum employed as an activator of the cobalt(II)-dihalide complex employed for the cobalt-mediate hydrovinylation has been determined to be: reduction of Co(II)-complex to Co(I)-complex and generation of cationic-Co(I) species as active catalyst. Well defined Co(I)-complexes were synthesized and characterized via NMR spectroscopy and crystallography. Treatment of these Co(I) complexes with various activators such as NaBARF, ZnCl2, B(C6F5)3, generates cationic Co(I) which mediates the reaction. This new protocol for hydrovinylation was successfully employed for a broadly applicable asymmetric heterodimerization of acrylates and 1,3-dienes. The reaction tolerates other functional groups such as olefins, alcohols, alkyl halides, trialkylsiloxy-, and even sensitive silyl enol ethers.

Enantioselective C-C Bond Forming Reactions

Enantioselective C-C Bond Forming Reactions
Author:
Publisher: Elsevier
Total Pages: 338
Release: 2023-12-01
Genre: Science
ISBN: 044323700X

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Enantioselective C-C Bond Forming Reactions: From Metal Complex-, Organo-, and Bio-catalyzed Perspectives, Volume 73 in the Advances in Catalysis series, highlights new advances in the field, with this new volume presenting interesting chapters on topics such as An introduction to Chirality, Metal-catalyzed stereoselective C-C-bond forming reactions, Enantioselective C-C bond forming reactions promoted by organocatalysts based on unnatural amino acid derivatives, Enantioselective C-C bond formation in complex multicatalytic system, Gold-based multicatalytic systems for enantioselective C-C Bond forming reactions, Novel enzymatic tools for C-C bond formation through the development of new-to-nature biocatalysis, and more. Provides the authority and expertise of leading contributors from an international board of authors Presents the latest release in Advances in Catalysis serials Updated release includes the latest information in the field

Enantioselective Titanium-catalysed Transformations

Enantioselective Titanium-catalysed Transformations
Author: Helene Pellissier
Publisher: World Scientific
Total Pages: 278
Release: 2016-01-15
Genre: Science
ISBN: 1783268964

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Chiral titanium complexes are low-cost, low-toxicity and high-efficiency catalysts. Impressive progress on enantioselective titanium-catalysed transformations has been achieved in the past seven years, with exciting new discoveries ranging from basic reactions to novel methodologies. Despite this, the field has not been substantially reviewed since 2008.This book contains up to date research and covers all types of enantioselective transformations using chiral titanium catalysts. It illustrates the economic, health, and environmental benefits of chiral titanium catalysts, showing the types of highly enantioselective reactions that they are able to induce are unlimited.Work presented here is aimed at researchers in organic and catalytic chemistry, and has been carefully curated to encourage future research possibilities.

Olefin Polymerization

Olefin Polymerization
Author: Walter Kaminsky
Publisher: Wiley-VCH
Total Pages: 0
Release: 2006-08-18
Genre: Technology & Engineering
ISBN: 9783527317424

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With an enormous velocity, olefin polymerization has expanded to one of the most significant fields in polymers since the first industrial use about 50 years ago. In 2005, 100 million tons of polyolefins were produced - the biggest part was catalyzed by metallorganic compounds. The Hamburg Macromolecular Symposium 2005 with the title "Olefin Polymerization" involved topics such as new catalysts and cocatalysts, kinetics, mechanism and polymer reaction engineering, synthesis of special polymers, and characterization of polyolefins. The conference combined scientists from different disciplines to discuss latest research results of polymers and to offer each other the possibility of cooperation. This is reflected in this volume, which contains invited lectures and selected posters presented at the symposium.

Modern Carbonyl Chemistry

Modern Carbonyl Chemistry
Author: Junzo Otera
Publisher: John Wiley & Sons
Total Pages: 632
Release: 2008-11-21
Genre: Science
ISBN: 3527613277

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The carbonyl group is undoubtedly one of the most important functional groups in organic chemistry, both in its role as reactive center for synthesis or derivatisation and as crucial feature for special structural or physiological properties. Vast and profound progress has been made in all aspects modern carbonyl chemistry. These achievements are, however, rather dispersed in the literature and it is often not easy for the researcher obtain a comprehensive overview of a relevant topic. Modern Carbonyl Chemistry overcomes this inconvenience by collating the information for appropriate themes. In this work internationally renowned experts and leaders in the field have surveyed recent aspects and modern features in carbonyl chemistry, such as cascade-reactions, one-pot-syntheses, recognition, or site differentiation.