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Dual-Functional Electrocatalyst Derived from Iron-Porphyrin-Encapsulated Metal-Organic Frameworks.

Jungwon ParkHyunjoon LeeYoung Eun BaeKyoung Chul ParkHoon JiNak Cheon JeongMin Hyung LeeOh Joong KwonChang Yeon Lee
Published in: ACS applied materials & interfaces (2017)
Active, stable electrocatalysts based on non-precious metals for the oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) are critical for the development of cost-effective, efficient renewable energy technologies. Here, Fe/Fe3C-embedded nitrogen-doped carbon was fabricated via pyrolysis of iron-porphyrin-encapsulated mesoporous metal-organic frameworks [PCN-333 (Fe), where "PCN" stands for "porous coordination network"] at 700 °C. The various characterization techniques confirmed that Fe- and Fe3C-containing Fe-N-C material (FeP-P333-700) was successfully prepared by pyrolysis of porphyrin-encapsulated PCN-333 (Fe). FeP-P333-700 exhibited superior electrocatalytic performance for the ORR and HER owing to the synergistic effect of Fe/Fe3C and Fe-N-C active sites.
Keyphrases
  • metal organic framework
  • risk assessment
  • photodynamic therapy
  • climate change
  • drinking water
  • cancer therapy
  • quantum dots
  • sewage sludge
  • network analysis
  • health risk assessment
  • anaerobic digestion