P. Sravandas, Megha Garg, Vishnu Naduvileparambil Sasi, Shewli Pratihar, Prasanna Kumar S. Mural, Akash Chandran
The piezo-photocatalytic performance of BiOI (1– x ) Cl x solid solutions was systematically investigated to unravel the role of built-in electric field regulation in charge carrier dynamics and to explore the potential of multifield coupled catalysis for environmental remediation. Comprehensive characterization confirmed halogen substitution modulates piezoelectricity, optical absorption, and charge separation efficiency. Using rhodamine B (RhB) as a model pollutant, the BiOI 0.25 Cl 0.75 solid solution achieved 99.9% degradation within 16 min, with a rate constant 1.53 times higher than piezocatalysis and 3.18 times that of photocatalysis alone, distinctly outperforming pristine BiOI and BiOCl. This superior activity arises from the synergistic effects of halogen-induced band structure tuning and the amplified piezoelectric field under mechanical stress, accelerating charge transfer and suppressing recombination. These findings highlight BiOI 0.25 Cl 0.75 solid solutions as efficient multifunctional catalysts and demonstrate piezo-photocatalysis as a sustainable pathway for harnessing solar and mechanical energy toward environmental purification.