Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Synthesis of valuable compounds through a cobalt-catalysed C-H functionalisation approach

View through CrossRef
Directed C-H functionalisation protocols have attracted significant interest in recent years as they offer the possibility of forming new bonds selectively via C-H bond cleavage, without requiring pre-functionalised substrates whilst reducing waste production. Precious metals such as palladium and rhodium have been utilised to make considerable advancements in the field. However, recently there has been a shift towards the use of more environmentally friendly and cost-effective 3d-transition metals. High valent cobalt (Co)-catalysed C-H functionalisation has emerged as a tool for the development of a variety of protocols for the formation of novel C-C or C-heteroatom bonds. Of particular interest to this thesis is the formation of important C-N bonds using Co(III)-catalysed C-H amidation protocols. Furthermore, utilising the products of the C-H amidation reaction for synthesis of new nitrogen-based heterocycles is desirable due to their prevalence in biologically active compounds and agrochemicals. The focus of this thesis is developing efficient routes to valuable nitrogen containing heterocycles starting from a key Co(III)-catalysed C-H amidation step. In this context, the use of Cp*Co(III) catalysts for the amidation of benzamide and N-phenylisobutyramide type of substrates is reported using 1,4,2-dioxazol-5-ones as amidating agents. The isolable amidated products are thereafter converted to the valuable 1,2,3-benzotriazin-4(3H)-ones and N-acetylbenzotriazoles utilising tert-butyl nitrite (TBN) under mild conditions. Furthermore, another interest for this thesis is the development of Co(III)-catalysed C-H amidation protocols for more challenging alkenyl substrates. There is limited information about the mechanism by which these Co(III)-catalysed C-H amidation protocols proceed thus, DFT calculations and experimental mechanistic investigations are employed to elucidate the reaction mechanisms. Lastly, 1,2,3-benzotriazin-4-(3H)-ones are reacted with various coupling partners in an attempt to provide new synthetic starting points for preparation of other potentially valuable heterocyclic compounds via denitrogenation under low-valent metal catalysis. It was posible to develop facile one-pot routes towards the synthesis 1,2,3-benzotriazin-4(3H)-ones and N-acetylbenzotriazoles starting from readily available substrates, using Co(III)-catalysed C-H amidation reactions as initials steps. Expanding the scope to alkenyl substrates was more challenging due to limited availability of starting materials and the poor reactivity of the substrates with substituents at the -position. Finally, DFT studies have revealed that the migratory insertion step is most likely the rate limiting step for the Co(III)-catalysed C-H amidation reactions
Sheffield Hallam University
Title: Synthesis of valuable compounds through a cobalt-catalysed C-H functionalisation approach
Description:
Directed C-H functionalisation protocols have attracted significant interest in recent years as they offer the possibility of forming new bonds selectively via C-H bond cleavage, without requiring pre-functionalised substrates whilst reducing waste production.
Precious metals such as palladium and rhodium have been utilised to make considerable advancements in the field.
However, recently there has been a shift towards the use of more environmentally friendly and cost-effective 3d-transition metals.
High valent cobalt (Co)-catalysed C-H functionalisation has emerged as a tool for the development of a variety of protocols for the formation of novel C-C or C-heteroatom bonds.
Of particular interest to this thesis is the formation of important C-N bonds using Co(III)-catalysed C-H amidation protocols.
Furthermore, utilising the products of the C-H amidation reaction for synthesis of new nitrogen-based heterocycles is desirable due to their prevalence in biologically active compounds and agrochemicals.
The focus of this thesis is developing efficient routes to valuable nitrogen containing heterocycles starting from a key Co(III)-catalysed C-H amidation step.
In this context, the use of Cp*Co(III) catalysts for the amidation of benzamide and N-phenylisobutyramide type of substrates is reported using 1,4,2-dioxazol-5-ones as amidating agents.
The isolable amidated products are thereafter converted to the valuable 1,2,3-benzotriazin-4(3H)-ones and N-acetylbenzotriazoles utilising tert-butyl nitrite (TBN) under mild conditions.
Furthermore, another interest for this thesis is the development of Co(III)-catalysed C-H amidation protocols for more challenging alkenyl substrates.
There is limited information about the mechanism by which these Co(III)-catalysed C-H amidation protocols proceed thus, DFT calculations and experimental mechanistic investigations are employed to elucidate the reaction mechanisms.
Lastly, 1,2,3-benzotriazin-4-(3H)-ones are reacted with various coupling partners in an attempt to provide new synthetic starting points for preparation of other potentially valuable heterocyclic compounds via denitrogenation under low-valent metal catalysis.
It was posible to develop facile one-pot routes towards the synthesis 1,2,3-benzotriazin-4(3H)-ones and N-acetylbenzotriazoles starting from readily available substrates, using Co(III)-catalysed C-H amidation reactions as initials steps.
Expanding the scope to alkenyl substrates was more challenging due to limited availability of starting materials and the poor reactivity of the substrates with substituents at the -position.
Finally, DFT studies have revealed that the migratory insertion step is most likely the rate limiting step for the Co(III)-catalysed C-H amidation reactions.

Related Results

Distributions and perturbations of the marine dissolved cobalt cycle in a changing ocean
Distributions and perturbations of the marine dissolved cobalt cycle in a changing ocean
Cobalt is a necessary nutrient for many marine phytoplankton, but its hybrid-type nature results in small marine inventories that make it one of the scarcest bioactive trace metals...
A Model for Cobalt 60/58 Deposition on Primary Coolant Piping in a Boiling Water Reactor
A Model for Cobalt 60/58 Deposition on Primary Coolant Piping in a Boiling Water Reactor
Opportunity exists in current BWRs to minimize or reduce the radiation fields which are present in the reactor coolant circuitry when the reactor is shut down. The major contributo...
Supramolecular Chemistry of Cobalt-Corrins
Supramolecular Chemistry of Cobalt-Corrins
Cobalt corrins are chiral relatives of the cobalt porphyrins, in which the ligand is much less unsaturated and is also ‘contracted’ by one carbon. This type of ligand strongly affe...
Physical and Chemical Characteristics of Cobalt Catalysts in the Process of Hydrogenating Acetylene
Physical and Chemical Characteristics of Cobalt Catalysts in the Process of Hydrogenating Acetylene
This paper describes the results of studies of the physicochemical characteristics of cobalt catalysts and methods for modifying them with alumina. The elemental composition, the p...
Pablo Picasso to Jasper Johns: a Raman study of cobalt‐based synthetic inorganic pigments
Pablo Picasso to Jasper Johns: a Raman study of cobalt‐based synthetic inorganic pigments
The Raman spectra of approximately 20 reference samples of cobalt‐based green and violet artists' pigments of various provenance (present day manufactory, historical reference pigm...
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
 Isolation, characterization of natural products dimeric amide alkaloids from roots of the Piper chaba Hunter. The synthesis of these products using intermolecular [4+2] cycloaddit...
Cobalt skin dose resulting from short and repetitive contact with hard metals
Cobalt skin dose resulting from short and repetitive contact with hard metals
SummaryBackgroundMany daily contacts with metallic items are short and repetitive, and result in metal release; material, sweat, friction and wear may all be important.ObjectivesTo...
Cycle biogéochimique du cobalt en domaines océaniques contrastés : l'Atlantique Ouest, la Mer Méditerranée et la Mer Noire
Cycle biogéochimique du cobalt en domaines océaniques contrastés : l'Atlantique Ouest, la Mer Méditerranée et la Mer Noire
Le cobalt est un métal de transition essentiel pour la croissance du phytoplancton, et en particulier pour les cyanobactéries qui ont un besoin absolu pour cet élément. En étant l'...

Back to Top