AI Article Synopsis

  • Bismuth serves as a catalyst that selectively generates formate during CO electrochemical reduction, with its restructuring during the reaction being previously unknown.
  • Researchers discovered that BiO nanoparticles convert into stellated nanosheet aggregates in an electrolyte, specifically 0.1 M KHCO, without any applied potential.
  • The study links the nanoparticles' transformation and subsequent stability or dissolution to changes in bismuth's solubility under different potentials, identifying metallic bismuth as the active phase for formate production.

Article Abstract

Bismuth is a catalyst material that selectively produces formate during the electrochemical reduction of CO. While different synthesis strategies have been employed to create electrocatalysts with better performance, the restructuring of bismuth precatalysts during the reaction has also been previously reported. The mechanism behind the change has, however, remained unclear. Here, we show that BiO nanoparticles supported on Vulcan carbon intrinsically transform into stellated nanosheet aggregates upon exposure to an electrolyte. Liquid cell transmission electron microscopy observations first revealed the gradual restructuring of the nanoparticles into nanosheets in the presence of 0.1 M KHCO without an applied potential. Our experiments also associated the restructuring with solubility of bismuth in the electrolyte. While the consequent agglomerates were stable under moderate negative potentials (-0.3 V), they dissolved over time at larger negative potentials (-0.4 and -0.5 V). Raman spectra collected during the reaction showed that under an applied potential, the oxide particles reduced to metallic bismuth, thereby confirming the metal as the working phase for producing formate. These results inform us about the working morphology of these electrocatalysts and their formation and degradation mechanisms.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10921375PMC
http://dx.doi.org/10.1021/acsami.3c18285DOI Listing

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