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August 15, 2017Angewandte Chemie International Edition387 citations

Fe‐Doped Ni3C Nanodots in N‐Doped Carbon Nanosheets for Efficient Hydrogen‐Evolution and Oxygen‐Evolution Electrocatalysis

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HFHaosen FanHYHong YuYZYufei Zhang

Key Points

  • This research investigates the electrocatalytic properties of Fe-doped Ni3C nanodots in N-doped carbon for hydrogen and oxygen evolution.
  • Prepared Ni3C nanodots through carburization of nickel cyanide precursors.
  • Characterized the electrocatalytic performance in KOH solution.
  • Evaluated parameters including overpotential and Tafel slope.
  • 2 at % Fe doped Ni3C nanosheets exhibited a HER overpotential of 292 mV and a Tafel slope of 41.3 mV dec −1.
  • OER performance showed a low overpotential of 275 mV and a Tafel slope of 62 mV dec −1.

Abstract

Abstract Uniform Ni 3 C nanodots dispersed in ultrathin N‐doped carbon nanosheets were successfully prepared by carburization of the two dimensional (2D) nickel cyanide coordination polymer precursors. The Ni 3 C based nanosheets have lateral length of about 200 nm and thickness of 10 nm. When doped with Fe, the Ni 3 C based nanosheets exhibited outstanding electrocatalytic properties for both the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). For example, 2 at % Fe (atomic percent) doped Ni 3 C nanosheets depict a low overpotential (292 mV) and a small Tafel slope (41.3 mV dec −1 ) for HER in KOH solution. An outstanding OER catalytic property is also achieved with a low overpotential of 275 mV and a small Tafel slope of 62 mV dec −1 in KOH solution. Such nanodot‐incorporated 2D hybrid structures can serve as an efficient bifunctional electrocatalyst for overall water splitting.

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Cite This Study

Fan et al. (2017) studied this question.

synapsesocial.com/papers/69d8079b45af6083e6ae2a3ahttps://doi.org/10.1002/anie.201706610
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