Artikel

Solid State Synthesis of BiVO4 and Its Use as a Photocatalyst for Solar Water Splitting

07.08.2025

Solid state reaction between BiOI and NH4VO3 allows to synthesize BiVO4 with precise chemical composition. The resultant stoichiometric BiVO4 shows attractive photocatalytic activity and superior stability to nonstoichiometric analogous.


BiVO4 is a promising photocatalyst for driving the solar water splitting. In this work, the report on a new strategy to synthesize BiVO4 by employing the solid-state chemical reaction between BiOI and NH4VO3 precursors. Reaction conditions, for example, reaction time, molar ratio of precursors are varied to investigate its impacts on the morphology and chemical composition of the resultant BiVO4. Impacts of the chemical composition on the photocatalytic activity and stability of BiVO4 are also investigated. It is demonstrated that the stoichiometric BiVO4 displayed the best stability, meaning the highest resistance again the corrosion while Bi2O3 impurity is detrimental to the operation of BiVO4 causing an acceleration of corrosion and lowering of photocatalytic activity. In contrast, the critical role of V2O5 impurity is evidenced in protecting BiVO4 against the corrosion and enhancing its photocatalytic activity.

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Solid State Synthesis of BiVO4 and Its Use as a Photocatalyst for Solar Water Splitting
In Kürze

Solid State Synthesis of BiVO4 and Its Use as a Photocatalyst for Solar Water Splitting
Ehrungen, Karriere

Solid State Synthesis of BiVO4 and Its Use as a Photocatalyst for Solar Water Splitting
Aus den Fachgruppen

Solid State Synthesis of BiVO4 and Its Use as a Photocatalyst for Solar Water Splitting
EuChemS Policy Workshop „PFAS”

Solid State Synthesis of BiVO4 and Its Use as a Photocatalyst for Solar Water Splitting
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