A novel sol-gel synthesis strategy of co-based sillenite composites for enhanced electrocatalysis of water splitting
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This work reports a new synthetic strategy and investigates the effect of thermal
treatment on Bi and Co oxide composites (BCO), comprising Co-based sillenite
(Bi24−xCox)Co2O40, Co3O4, and Bi2O3, as well as their application as electrocatalysts in the
oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). The materials were
synthesized by a modified Pechini sol−gel method using citric acid as a complexing agent and
ethylene glycol as a polymerization agent and were calcined in the range between 500 and 1000
°C. Rietveld refinement of the XRD data confirmed the predominance of the sillenite and
Co3O4 crystalline phases, both with cubic structures, with minor quantities of α-Bi2O3
(monoclinic) at 500 and 600 °C. A higher sillenite content (>60 wt %) was observed at
700 and 800 °C, while at 900 °C the sillenite phase decreased, disappearing completely at 1000
°C, where α-Bi2O3 became dominant. The BCO sample calcined at 700 °C exhibited the
lowest overpotentials for both the OER and HER in 1 mol L−1 KOH (pH 14), 475 and 307
mV at j ± 10 mA cm−2
, respectively. The corresponding Tafel slopes for the OER and HER of
62 and 23 mV dec−1
, respectively, also exhibited the lowest values. The superior catalytic performance of BCO-T700 can be related
to the synergy between Co2+ and Bi3+ species shown by X-ray photoelectron spectroscopy. These findings reinforce the potential of
sillenite-based composites as efficient, low-cost, bifunctional electrocatalysts for water splitting and hydrogen production. Notably,
no prior electrochemical studies of cobalt sillenites synthesized via the adapted Pechini method were found, emphasizing the
relevance of this work.
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ACIOLI, Mayara et al. A novel sol-gel synthesis strategy of co-based sillenite composites for enhanced electrocatalysis of water splitting. ACS Omega, Washington, v. 11, n. 7, p. 11426-11441, 2026. DOI: 10.1021/acsomega.5c09012. Disponível em: https://pubs.acs.org/acsodf/article/11/7/11426/5078329/A-Novel-Sol-Gel-Synthesis-Strategy-of-Co-Based. Acesso em: 4 set. 2026.