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  4. Bio-inspired design. Bulk iron-nickel sulfide allows for efficient solvent-dependent CO2 reduction
 
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2019
  • Zeitschriftenaufsatz

Titel

Bio-inspired design. Bulk iron-nickel sulfide allows for efficient solvent-dependent CO2 reduction

Abstract
The electrocatalytic reduction of carbon dioxide (CO2RR) to valuable bulk chemicals is set to become a vital factor in the prevention of environmental pollution and the selective storage of sustainable energy. Inspired by structural analogues to the active site of the enzyme CODHNi, we envisioned that bulk Fe/Ni sulfides would enable the efficient reduction of CO2. By careful adjustment of the process conditions, we demonstrate that pentlandite (Fe4.5Ni4.5S8) electrodes, in addition to HER, also support the CO2RR reaching a peak faradaic efficiency of 87% and 13% for the formation of CO and methane, respectively at 3 mA cm 2. The choice of solvent, the presence of water/protons and CO2 solubility are identified as key-properties to adjust the balance between HER and CO2RR in favour of the latter. Such experiments can thus serve as model reactions to elucidate a potential catalyst within gas diffusion electrodes.
Author(s)
Piontek, Stefan
Ruhr-Universität Bochum
junge Puring, Kai
Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT
Siegmund, Daniel
Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT
Smialkowski, Mathias
Ruhr-Universität Bochum
Sinev, Ilya
Ruhr-Universität Bochum
Tetzlaff, David
Ruhr-Universität Bochum
Roldan Cuenya, Beatriz
Fritz-Haber Institute of the Max Planck Society
Apfel, Ulf-Peter
Fraunhofer-Institut für Umwelt-, Sicherheits- und Energietechnik UMSICHT
Zeitschrift
Chemical Science
Funder
Deutsche Forschungsgemeinschaft DFG
Deutsche Forschungsgemeinschaft DFG
Bundesministerium für Bildung und Forschung BMBF (Deutschland)
DOI
10.1039/C8SC03555E
File(s)
N-534364.pdf (944.99 KB)
Language
Englisch
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UMSICHT Oh
Tags
  • carbon dioxide

  • diffusion in gas

  • parallel electrode

  • nickel compound

  • sulfur compound

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