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      Nanoscale mapping of catalytic hotspots on Fe, N-modified HOPG by scanning electrochemical microscopy-atomic force microscopy.

      1 , ,
      Nanoscale
      Royal Society of Chemistry (RSC)

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          Abstract

          The scanning electrochemical microscopy-atomic force microscopy (SECM-AFM) technique is used to map catalytic currents post Fe and N surface modification of graphitic carbon with an ultra-high resolution of 50 nm. The oxidation current of the partial reduction product, hydrogen peroxide, was also mapped in the same location in the graphitic carbon. The current mapping and ex situ spectroscopic evidence revealed that Fe-coordinated nitrogen sites formed both in the edge and basal planes of highly ordered pyrolytic graphite (HOPG) constitute the primary oxygen reduction catalytic sites in acid solutions of this important yet insufficiently understood class of catalysts.

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          Author and article information

          Journal
          Nanoscale
          Nanoscale
          Royal Society of Chemistry (RSC)
          2040-3372
          2040-3364
          Apr 19 2018
          : 10
          : 15
          Affiliations
          [1 ] Department of Chemical Sciences, Ariel University, Ariel 40700, Israel. salex@ariel.ac.il.
          Article
          10.1039/c8nr00849c
          29610805
          e6720ab9-78de-401d-9663-4c4b1a61b3f7
          History

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