Synthesis of B-RGO-MWCNT/CuFeO 2 Composite for Efficient Hydrogen Evolution Reaction

  • Sakthinathan S
  • Rajakumaran R
  • Keyan A
  • et al.
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Abstract

The key to utilizing renewable energy is the development of promising new materials for electrocatalytic water splitting. Boron doped reduced graphene oxide/multiwalled carbon nanotubes (B-RGO-MWCNT) composite decorated with CuFeO 2 complex modified glassy carbon electrode (GCE) was applied to the water electrolysis (HER). The B-RGO-MWCNT composite was prepared using the hydrothermal method and the CuFeO 2 delafossite material was synthesized by a glycine nitrate process. Moreover, the material structures of B-RGO-MWCNT/CuFeO 2 composite were identified by different spectroscopic and microscopic measurements. The B-RGO-MWCNT/CuFeO 2 composite was structurally well-formed with an active surface area. The GCE electrode decorated with B-RGO-MWCNT/CuFeO 2 composite was applied to HER and exhibited an outstanding electrocatalytic response with low over-potential and a small Tafel slope of 54 mV·dec −1 at 10 mA.cm −2 over potential with high stability. Moreover, the small Tafel slope suggests a promising electrocatalyst suitable for practical use. Furthermore, the obtained B-RGO-MWCNT/CuFeO 2 electrode was correlated with Pt/C and exhibited superior electrocatalytic performance toward the HER in acidic media. The electrochemical response is credited to the active sites and effective electron transport between CuFeO 2 and B-RGO-MWCNT. As a result, the B-RGO-MWCNT/CuFeO 2 composite looks to be an effective catalyst for the electrocatalytic reaction of HER and has the potential to produce clean energy.

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Sakthinathan, S., Rajakumaran, R., Keyan, A. K., Vasu, D., Chen, S.-M., & Chiu, T.-W. (2021). Synthesis of B-RGO-MWCNT/CuFeO 2 Composite for Efficient Hydrogen Evolution Reaction. ECS Journal of Solid State Science and Technology, 10(11), 111001. https://doi.org/10.1149/2162-8777/ac31cf

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