4.6 Article

The catalytic effect of RuM-C catalyst attached to carbon- based support for hydrogen evolution reaction

Journal

NANOTECHNOLOGY
Volume 33, Issue 28, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/1361-6528/ac6086

Keywords

ruthenium-vanadium bimetallic electrocatalysts; non-precious; fungus; hydrogen evolution reaction

Funding

  1. National Natural Science Foundation of China [21005008, 21773017, 21303181]
  2. Jilin Provincial Science Research Foundation of China [20160520133JH]
  3. Educational Department of Jilin Province of China [JJKH20170544KJ]

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The conversion of traditional biomass into low-cost HER catalysts offers broad application prospects. This paper demonstrates the excellent HER activity and stability of the synthesized RuV-C catalyst.
The potential of converting traditional biomass into low-cost HER catalysts has broad application prospects. In this paper, fungus is used as a carbon-based carrier. The bimetallic catalyst RuM-C (M = V, Mo, W, Zn, Cu) was synthesized under inert gas protection at high temperature. The order of electrocatalytic activity is RuV-C > RuZn-C > RuW-C > RuMo-C > Ru-C > RuCu-C > BF-C, which indicates that RuV-C exhibits excellent HER activity. Due to its irregular sheet structure, the specific surface area of the catalyst is increased. Impressively, it exhibits extremely high catalytic activity for HER in 1 M KOH due to favorable kinetics and excellent specific activity. Consequently, the prepared RuV-C exhibited excellent and stable HER activity compared Ru-C with a low overpotential of 65.78 mV at the current densities of 10 mA cm(-2) and Tafel slope of 45.26 mV dec(-1). The potential only decreased by 88 mV after 24 h of continuous testing, which indicates that the catalyst has outstanding stability. This work will provide positive inspiration for the promotion of a new Ru-based biomass HER electrocatalyst.

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