Studies on Borylation Reactions Hydro and Carboboration of Alkynes and Borylation of Carboxylic Acids

dc.contributor.guideDAS, J.P.
dc.coverage.spatial
dc.creator.researcherBEHERA, MINATI
dc.date.accessioned2025-11-07T10:14:43Z
dc.date.available2025-11-07T10:14:43Z
dc.date.awarded2024
dc.date.completed2024
dc.date.registered2016
dc.description.abstractOrganoboron compounds have found wide applications in the formation of novel C-O, C-C and C-N bond via transition metal-catalyzed reactions. The hydroboration and carboborylation of carbon-carbon multiple bonds is one of the robust methodologies to introduce the boron atom into the organic framework. Traditionally, borane species were used in the borylation reaction (Hydroboration, and carboborylation) of alkynes under transition metal free conditions for synthesis of vinylboronate intermediates. When employing precious metal catalyst such as palladium and, rhodium in the reactions, the scope of borylation as well as the regio- and stereoselctivity in the reaction enhanced. In recent years, the non-precious 3d- metal catalysts such are nickel, cobalt, iron and copper were widely used in the borylation reaction of alkynes especially in improvement of selectivity. Alkenyl boronates have extensive applications in organic synthesis. These are utilized in various coupling reactions to form new carbon-carbon bonds, facilitating the synthesis of complex molecules. Additionally, alkenylboronates play a crucial role in drug design, with potential applications in pharmaceutical research. Furthermore, alkenylboronates exhibit significant biological effects, particularly in anti-cancer studies contributing to ongoing research efforts in the development of novel therapies. newlineThe thesis entitled Studies on Borylation Reactions: Hydro- and Carboboration of Alkynes and Borylation of Carboxylic Acids presents our efforts toward comprehending the regio- and stereoselective borylation reactions of alkynes and carboxylic acids, employing various base metals as catalysts. Mechanistic studies have been conducted to elucidate newline
dc.description.noteOrganoboron compounds have found wide applications in the formation of novel C-O, C-C and C-N bond via transition metal-catalyzed reactions. The hydroboration and carboborylation of carbon-carbon multiple bonds is one of the robust methodologies to introduce the boron atom into the organic framework. Traditionally, borane species were used in the borylation reaction (Hydroboration, and carboborylation) of alkynes under transition metal free conditions for synthesis of vinylboronate intermediates. When employing precious metal catalyst such as palladium and, rhodium in the reactions, the scope of borylation as well as the regio- and stereoselctivity in the reaction enhanced. In recent years, the non-precious 3d- metal catalysts such are nickel, cobalt, iron and copper were widely used in the borylation reaction of alkynes especially in improvement of selectivity. Alkenyl boronates have extensive applications in organic synthesis. These are utilized in various coupling reactions to form new carbon-carbon bonds, facilitating the synthesis of complex molecules. Additionally, alkenylboronates play a crucial role in drug design, with potential applications in pharmaceutical research. Furthermore, alkenylboronates exhibit significant biological effects, particularly in anti-cancer studies contributing to ongoing research efforts in the development of novel therapies. The thesis entitled Studies on Borylation Reactions: Hydro- and Carboboration of Alkynes and Borylation of Carboxylic Acids presents our efforts toward comprehending the regio- and stereoselective borylation reactions of alkynes and carboxylic acids, employing various base metals as catalysts. Mechanistic studies have been conducted to elucidate
dc.format.accompanyingmaterialDVD
dc.format.dimensionsA4
dc.format.extentALL PAGES
dc.identifier.researcherid
dc.identifier.urihttp://hdl.handle.net/10603/672090
dc.languageEnglish
dc.publisher.institutionDepartment of Chemistry
dc.publisher.placeCuttack
dc.publisher.universityRavenshaw University
dc.relation
dc.rightsuniversity
dc.source.universityUniversity
dc.subject.keywordChemistry
dc.subject.keywordChemistry Analytical
dc.subject.keywordPhysical Sciences
dc.titleStudies on Borylation Reactions Hydro and Carboboration of Alkynes and Borylation of Carboxylic Acids
dc.title.alternative
dc.type.degreePh.D.

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