RETRACTED: Enhanced membraneless fuel cells by electrooxidation of ethylene glycol with a nanostructured cobalt metal catalyst (Retracted article. See vol. 280, 2025)

  • Aarimuthu, Gayathri; 
  • Sathiasivan, Kiruthika; 
  • Varadharajan, Selvarani; 
  • Balakrishnan, Muthukumaran; 
  • Albeshr, Mohammed F.; 
  • ... Kim, Woong; 
  • 외 1명
Citations

WEB OF SCIENCE

4
Citations

SCOPUS

3

초록

The advancement of effective and long-lasting electrocatalysts for energy storage devices is crucial to reduce the impact of the energy crisis. In this study, a two-stage reduction process was used to synthesize carbon-supported cobalt alloy nanocatalysts with varying atomic ratios of cobalt, nickel and iron. The formed alloy nanocatalysts were investigated using energy-dispersive X-ray spectroscopy, X-ray diffraction, and transmission electron mi-croscopy to determine their physicochemical characterization. According to XRD results, Cobalt-based alloy nanocatalysts form a face-centered cubic solid solution pattern, illustrating thoroughly mixed ternary metal solid solutions. Transmission electron micrographs also demonstrated that samples of carbon-based cobalt alloys displayed homogeneous dispersion at particle sizes ranging from 18 to 37 nm. Measurements of cyclic voltam-metry, linear sweep voltammetry, and chronoamperometry revealed that iron alloy samples exhibited much greater electrochemical activity than non-iron alloy samples. The alloy nanocatalysts were evaluated as anodes for the electrooxidation of ethylene glycol in a single membraneless fuel cell to assess their robustness and ef-ficiency at ambient temperature. Remarkably, in line with the results of cyclic voltammetry and chro-noamperometry, the single-cell test showed that the ternary anode works better than its counterparts. The significantly higher electrochemical activity was observed for alloy nanocatalysts containing iron than for non-iron alloy catalysts. Iron stimulates nickel sites to oxidize cobalt to cobalt oxyhydroxides at lower over-potentials, which contributes to the improved performance of ternary alloy catalysts containing iron.

키워드

Cobalt alloy nanocatalysts; Carbon support; Ethylene glycol; Electrooxidation; Membraneless fuel cell; Two-stage reduction process; ELECTROCHEMICAL CHARACTERIZATION; MAGNETIC-PROPERTIES; ETHANOL OXIDATION; OXYGEN EVOLUTION; CARBON SHELL; LOW-COST; PERFORMANCE; FE; METHANOL; ELECTROCATALYSTS
제목
RETRACTED: Enhanced membraneless fuel cells by electrooxidation of ethylene glycol with a nanostructured cobalt metal catalyst (Retracted article. See vol. 280, 2025)
저자
Aarimuthu, Gayathri; Sathiasivan, Kiruthika; Varadharajan, Selvarani; Balakrishnan, Muthukumaran; Albeshr, Mohammed F.; Alrefaei, Abdulwahed Fahad; Kim, Woong
DOI
10.1016/j.envres.2023.115601
발행일
2023-09-15
유형
Article; Retracted Publication
저널명
Environmental Research
권
233