Abstract
An advanced vacancy-rich bi-chalcogenide, Cu2S-Se@Cu, was perceived to be a highly efficient and sustainable catalyst towards HER in acid due to its synergistic effects. Interestingly, the selenization of Cu2S@Cu foams created oxygen vacancies with enriched layered Cu2S-Se superstructures by wet-chemical and hydrothermal approaches. The best catalyst Cu2S-Se@Cu-Wet exhibited a small overpotential of 315 mV at 100 mA cm−2 and a low Tafel slope of 97 mV dec−1. Benefiting from the intrinsic activity, Cu2S-Se-Wet delivered a high mass activity of 2675 mA mg−1 cm−2 and a turnover frequency of 0.371 s−1. Moreover, the Faradaic efficiency measured by gas chromatography (GC) for Cu2S-Se@Cu-Wet showed 97.16% efficiency. Density functional theory (DFT) studies for HERs depicted that Cu2S-Se at the surface of the Cu(001) plane revealed a favourable free energy ΔGH* of −0.36 eV. From the density of states (DoS), it is affirmed that Cu2S-Se over the Cu surface has reduced the band gap close to zero, which stressed the enhanced HER catalytic activity with O-vacancies. The HER enhancement of such vacancy with the electrocatalytic system creates a new response toward stability and reproducibility in the near future.
Cite
CITATION STYLE
Kumaravel, S., Kumar, D., Sam Sankar, S., Karmakar, A., Madhu, R., Bera, K., … Kundu, S. (2022). Vacancy-fused multiple layers of copper sulfoselenide superstructures: a propitious HER electrocatalyst in acidic medium. Catalysis Science and Technology, 13(3), 694–704. https://doi.org/10.1039/d2cy01336c
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.