Controlling the Interfacial Charge Polarization of MOF-Derived 0D-2D vdW Architectures as a Unique Strategy for Bifunctional Oxygen Electrocatalysis Article

Ahsan, Md Ariful, He, Tianwei, Eid, Kamel et al. (2022). Controlling the Interfacial Charge Polarization of MOF-Derived 0D-2D vdW Architectures as a Unique Strategy for Bifunctional Oxygen Electrocatalysis . ACS APPLIED MATERIALS & INTERFACES, 14(3), 3919-3929. 10.1021/acsami.1c17283

International Collaboration

cited authors

  • Ahsan, Md Ariful; He, Tianwei; Eid, Kamel; Abdullah, Aboubakr M; Sanad, Mohamed Fathi; Aldalbahi, Ali; Alvarado-Tenorio, Bonifacio; Du, Aijun; Santiago, Alain R Puente; Noveron, Juan C

sustainable development goals

publication date

  • January 26, 2022

published in

keywords

  • 0D-2D nanohybrid
  • CATALYSTS
  • COMPOSITE
  • ELECTRON-TRANSFER
  • EVOLUTION
  • HYDROGEN
  • Materials Science
  • Materials Science, Multidisciplinary
  • NANOCRYSTALS
  • NANOPARTICLES
  • NANOSHEETS
  • NITRIDE
  • Nanoscience & Nanotechnology
  • REDUCTION
  • Science & Technology
  • Science & Technology - Other Topics
  • Technology
  • metal-organic framework
  • overall water splitting
  • oxygen evolution reaction
  • oxygen reduction reaction
  • zinc-air battery

Digital Object Identifier (DOI)

publisher

  • AMER CHEMICAL SOC

start page

  • 3919

end page

  • 3929

volume

  • 14

issue

  • 3