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Novel ligands and applications for thermal and photochemical cyclotrimerization reactions with 3d metals

  • Hapke, M. (Vortragende*r)
  • Rahamdil Usman (Mitwirkende*r)
  • Anagha Karayil Satheeshkumar (Mitwirkende*r)
  • Shyam Sundar Mothuku (Mitwirkende*r)
  • Benedikt Baumann (Mitwirkende*r)

Aktivität: Vortrag oder PräsentationVortrag nach Bewerbung und AuswahlScience-to-science

Beschreibung

Transition metal-catalyzed [2+2+2] cycloaddition reactions are widely recognized for their versatility and atom efficiency. A notable feature of this reaction is its ability to be mediated or catalyzed by a broad range of transition metals. Among these, first-row late transition metals, such as nickel and cobalt, were among the earliest to show successful examples of catalytic cyclotrimerizations, exhibiting distinct and unique catalytic properties compared to their heavier counterparts. In particular, applying CpCo(I) precatalysts for assembling heterocyclic compounds is a highly versatile tool, working under various conditions and for a steadily extending substrate scope. The field was recently extended to the first application of manganese complexes for photo-catalyzed cyclotrimerization reactions, turning out to be efficient catalysts under irradiation with visible light.
The further development depends on the development of ligands, which modify the reaction space around the catalytically active center. The assembly and implementation of chiral ligands for cobalt-catalyzed cycloaddition reactions is a challenging task, and we will report on our synthetic approaches in this area to efficiently assemble ligand precursors from novel backbones including the efficient construction of symmetrically as well as unsymmetrically Cp rings. The application of the ligands in metal complexes for the synthesis of novel heterocyclic products structures will be exemplified for novel substrates, like shown in Figure 1.
Zeitraum02 Sep. 2025
Ereignistitel22nd International Symposium on Organometallic Chemistry Directed Towards Organic Synthesis (OMCOS XXII)
VeranstaltungstypKonferenz
OrtKyoto, JapanAuf Karte anzeigen
BekanntheitsgradInternational

Wissenschaftszweige

  • 104003 Anorganische Chemie
  • 104016 Photochemie
  • 104015 Organische Chemie
  • 104008 Katalyse
  • 104027 Computational Chemistry

JKU-Schwerpunkte

  • Sustainable Development: Responsible Technologies and Management