4.6 Article

Synergistic coupling of FeOOH with Mo-incorporated NiCo LDH towards enhancing the oxygen evolution reaction

Journal

NEW JOURNAL OF CHEMISTRY
Volume 46, Issue 17, Pages 7999-8009

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2nj00867j

Keywords

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Funding

  1. Scientific Research Project of Education Department of Hunan Province [18C0272]
  2. National Key Research and Development Program [2019YFB1503801]
  3. Hunan Provincial Key Research & Development Program [2022GK2030]

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This study developed an efficient electrocatalyst for the oxygen evolution reaction (OER), which incorporated molybdenum into nickel foam-based NiCo LDH and deposited FeOOH to configure an FeOOH-NiCoMo LDH/NF catalyst. The synthesized nanoarray exhibited excellent OER performance in alkaline medium and simulated alkaline seawater, along with good long-term stability.
To speed up the water splitting process, extremely efficient electrocatalysts for the oxygen evolution reaction (OER) must be developed. Herein, we successfully incorporated Mo into NiCo LDH on the surface of nickel foam (NF) using a hydrothermal approach (NiCoMo LDH/NF), and then used an electrodeposition method to deposit FeOOH uniformly on the surface of ternary NiCoMo LDH/NF to configure an FeOOH-NiCoMo LDH/NF electrocatalyst. The synthesized nanoarray exhibits excellent electrocatalytic performance for oxygen evolution reaction (OER) both in alkaline medium (1.0 M KOH) and simulated alkaline seawater (1.0 M KOH and 0.5 M NaCl aqueous solution), the overpotential is 256 mV and 272 mV at the current density of 50 mA cm(-2), respectively. In addition, the long-term stability is evaluated for 50 h at 50 mA cm(-2) and only a 0.07% increase is observed. The enhanced OER activity is attributed to: (I) the defect - rich structure of holey nanobrush arrays, which increases the number of electrocatalytic active sites; (II) the incorporation of high-valence Mo into the LDH structure, which can tune the electronic structure to reduce the reaction resistance; (III) the improved kinetics from synergistic coupling of FeOOH with ternary NiCoMo LDH.

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