Zur Hauptnavigation wechseln Zur Suche wechseln Zum Hauptinhalt wechseln

Molecular co-Corrole complex for the heterogeneous electrocatalytic reduction of carbon dioxide on carbon fiber electrodes

  • Sabrina Gonglach (Vortragende*r)
  • Shounik Paul (Vortragende*r)
  • Michael Haas (Vortragende*r)
  • Felix Pillwein (Vortragende*r)
  • Sreejith S. Sreekumar (Vortragende*r)
  • Soumitra Barman (Vortragende*r)
  • Ratnadip De (Vortragende*r)
  • Schöfberger, W. (Vortragende*r)
  • Soumyajit Roy (Vortragende*r)

Aktivität: Vortrag oder PräsentationPosterpräsentationScience-to-science

Beschreibung

Electrochemical conversion of CO2 to alcohols is one of the most challenging methods of conversion and storage of electrical energy in the form of high-energy fuels. The challenge lies in the catalyst design to enable its real-life implementation. Herein, we demonstrate the synthesis and characterization of a cobalt(III) triphenylphosphine corrole complex (Co-corrole), which contains three polyethylene glycol residues attached at the meso-phenyl groups. The Co(III) ion in the center of the 18π-electronic macrocycle is electrochemically reduced to Co(I). Herein, we report the potential dependent heterogeneous electroreduction of CO2 to ethanol or methanol of an immobilized cobalt A3-corrole catalyst system. In moderately acidic aqueous medium (pH = 6.0), the Co-corrole modified carbon paper electrode exhibits a Faradaic Efficiency (FE%) of 47 % towards ethanol production, a TON of 196 and a TOF of 0.011 s-1 at -0.8 V vs RHE over 5 hours measurement time.
Zeitraum15 Juli 2019
EreignistitelESOC 2019
VeranstaltungstypKonferenz
OrtÖsterreichAuf Karte anzeigen

Wissenschaftszweige

  • 104021 Strukturchemie
  • 104 Chemie
  • 106041 Strukturbiologie
  • 302043 Magnetresonanztomographie (MRT)
  • 104017 Physikalische Chemie
  • 301305 Medizinische Chemie
  • 106002 Biochemie
  • 104026 Spektroskopie
  • 104015 Organische Chemie

JKU-Schwerpunkte

  • Sustainable Development: Responsible Technologies and Management