Transition Metal Catalyzed Carbon-Heteroatom Bond Formations

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dc.contributor.advisor Fleischer, Ivana (Prof. Dr.)
dc.contributor.author Oechsner, Regina Michaela
dc.date.accessioned 2023-11-02T10:36:36Z
dc.date.available 2023-11-02T10:36:36Z
dc.date.issued 2025-09-13
dc.identifier.uri http://hdl.handle.net/10900/147009
dc.identifier.uri http://nbn-resolving.de/urn:nbn:de:bsz:21-dspace-1470095 de_DE
dc.identifier.uri http://dx.doi.org/10.15496/publikation-88350
dc.description.abstract Die Dissertation ist bis zum 13. September gesperrt ! de_DE
dc.description.abstract The following cumulative thesis showcases strategies for mild transition metal catalyzed carbon-heteroatom bond formations, including C-S bonds via cross-coupling and C-I bonds via epimerization. An introduction and literature overview, as well as a summary of published and unpublished results, in addition to the published scientific articles with their corresponding supporting information are included. Transition metal catalysis enables a plethora of transformations, generating valuable synthetic products. One example is the C-S cross-coupling of aryl and alkenyl (pseudo)halides with alkyl thiols, generating thioethers, a compound class with widespread application in materials, agrochemicals and pharmaceuticals. An efficient synthesis of these high value compounds, by employing the air-stable, low-cost pre-catalyst XantphosNi(o-tolyl)Cl and KOAc as base at room temperature, is the main focus of this thesis. The first project focused on the coupling of aryl chlorides, showcasing a scope of 50 examples with excellent yields and functional group tolerance. A variety of alternative aryl (pseudo)halides were successfully employed as electrophiles, demonstrating the versatility of the system. Chemoselective functionalization of di-substituted aryl (pseudo)halides enabled selective mono-coupling as well as sequential multi-functionalization. Subsequently, the methodology was expanded to aryl and alkenyl triflates, synthesized in a straight-forward, one-step procedure from abundant phenols and ketones, with a scope of 38 examples, exhibiting superior reactivity and yields. Additionally, the applicability of the catalytic system for late-stage functionalization of pharmaceutically active or biorelevant compounds was demonstrated. Mechanistic investigations, including kinetic and NMR-studies, as well as DFT calculations, supporting a Ni(0)/Ni(II) catalytic cycle, were conducted. Furthermore, a comparison of various one-component pre-catalysts, as well as preliminary experiments towards enantioselective C-S cross-coupling are included. The second part of this thesis showcases stereochemical C-I bond editing in a palladium catalyzed epimerization under blue light irradiation (465 nm LED) from the exo to endo face of norbornene model compounds with 17 examples and endo selectivity up to > 20:1. Mechanistic studies and DFT calculations support a reversible C-I bond formation through a thermodynamically driven epimerization. en
dc.language.iso en de_DE
dc.publisher Universität Tübingen de_DE
dc.rights ubt-podok de_DE
dc.rights.uri http://tobias-lib.uni-tuebingen.de/doku/lic_mit_pod.php?la=de de_DE
dc.rights.uri http://tobias-lib.uni-tuebingen.de/doku/lic_mit_pod.php?la=en en
dc.subject.ddc 540 de_DE
dc.subject.other cross-coupling en
dc.subject.other nickel catalysis en
dc.subject.other thioether en
dc.subject.other acetate en
dc.subject.other aryl chloride en
dc.subject.other aryl and alkenyl triflate en
dc.subject.other epimerization en
dc.subject.other stereochemical editing en
dc.subject.other blue light en
dc.title Transition Metal Catalyzed Carbon-Heteroatom Bond Formations en
dc.type PhDThesis de_DE
dcterms.dateAccepted 2023-09-13
utue.publikation.fachbereich Chemie de_DE
utue.publikation.fakultaet 7 Mathematisch-Naturwissenschaftliche Fakultät de_DE
utue.publikation.noppn yes de_DE

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