Faiz Mahmood, Dibakar Roy, R. Roopashree, Subhashree Ray, Aashna Sinha, Krishan Kumar Sah, Bekzod Babamuratov, Ruziyev Islambay Samandarovich, S. S. Sabirov, Rajwali Khan
The formation of extremely stable and effective visible-light photocatalysts is critical to the solar-based environmental remediation and hydrogen generation. New metallotsiloxane-co-doped TiO 2 (Zr/Ag-TiO 2 ) nanocomposites were developed in this paper through a relatively easy sol-gel reaction and systematically investigated using XRD, SEM, EDS, UVVis DRS, PL, and XPS. The findings verify the preparation of plasmonic Ag/Zr-figured TiO 2 heterojunction in which substitutional Zr 4+ tuning of lattice and Ag-facilitated surface plasmon resonance jointly reduce the bandgap to 2.62 eV and enhance rapid charge separation. The composite was optimized to give a state of art performance, degrading 95.8% of methylene blue in 90 min (k a = 0.0284 min −1) and hydrogen was evolved at a rate of 980 mol g −1 h −1 in the visible-light irradiation. Anywhere up to 90% activity retained after five cycles and basal level Ag leaching of less than 0.5% gave exceptional stability. These results indicate that the co-doping approach offers a solid interface-engineering framework, in which the next-generation visible-light photocatalysts can be created to act as an environmental/sustainable-energy resource.