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Novel Non-Precious Metal Electrocatalysts for Oxygen Electrode Reactions

Novel Non-Precious Metal Electrocatalysts for Oxygen Electrode Reactions

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Research on alternative energy harvesting technologies, conversion and storage systems with high efficiency, cost-effective and environmentally friendly systems, such as fuel cells, rechargeable metal-air batteries, unitized regenerative cells, and water electrolyzers has been stimulated by the global demand on energy. The conversion between oxygen and water plays a key step in the development of oxygen electrodes: oxygen reduction reaction (ORR) and oxygen evolution reaction (OER), processes activated mostly by precious metals, like platinum. Their scarcity, their prohibitive cost, and declining activity greatly hamper large-scale applications. This issue reports on novel non-precious metal electrocatalysts based on the innovative design in chemical compositions, structure, and morphology, and supports for the oxygen reaction.

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Keywords

  • 2
  • 3
  • 4
  • 5-triazine
  • 6-tri(2-pyridyl)-1
  • active site
  • alkaline
  • bacterial cellulose/poly(methylene blue) hybrids
  • binary nitrogen precursors
  • Co-bpdc
  • Co-bpdc/MWCNTs composites
  • cobalt and nitrogen co-doped
  • cobalt-based electrocatalysts
  • electrocatalysis
  • electrocatalyst
  • electrophilic Ni3+ and O?
  • Fe-N-C catalyst
  • Fuel cells
  • g-C3N4
  • graphene-carbon nanotube aerogel
  • heteroatom doping
  • hydrogen evolution reaction
  • layered double hydroxide
  • manganese dioxide
  • mesoporous NiO
  • metal-free catalysts
  • metal–organic framework
  • n/a
  • nanocarbon
  • nitrogen sulfur co-doped carbon nanofibers
  • non-precious metal
  • non-precious metal catalyst
  • nucleophilic attack
  • oxygen evolution reaction
  • oxygen reduction reaction
  • silver bismuthate
  • three-dimensional
  • water splitting

Links

DOI: 10.3390/books978-3-03921-541-6

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