Plasma Ag-Modified α-FeO/g-CN Self-Assembled S-Scheme Heterojunctions with Enhanced Photothermal-Photocatalytic-Fenton Performances.

Nanomaterials (Basel)

Yunnan Key Laboratory of Carbon Neutrality and Green Low-Carbon Technologies, Yunnan University, Kunming 650504, China.

Published: November 2022

Low spectral utilization and charge carrier compounding limit the application of photocatalysis in energy conversion and environmental purification, and the rational construction of heterojunction is a promising strategy to break this bottleneck. Herein, we prepared surface-engineered plasma Ag-modified α-FeO/g-CN S-Scheme heterojunction photothermal catalysts by electrostatic self-assembly and light deposition strategy. The local surface plasmon resonance effect induced by Ag nanoparticles broadens the spectral response region and produces significant photothermal effects. The temperature of Ag/α-FeO/g-CN powder is increased to 173 °C with irradiation for 90 s, ~3.2 times higher than that of the original g-CN. The formation of 2D/2D structured S-Scheme heterojunction promotes rapid electron-hole transfer and spatial separation. Ternary heterojunction construction leads to significant enhancement of photocatalytic performance of Ag/α-FeO/g-CN, the H photocatalytic generation rate up to 3125.62 µmol g h, which is eight times higher than original g-CN, and the photocatalytic degradation rate of tetracycline to reach 93.6%. This thermally assisted photocatalysis strategy improves the spectral utilization of conventional photocatalytic processes and provides new ideas for the practical application of photocatalysis in energy conversion and environmental purification.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9740289PMC
http://dx.doi.org/10.3390/nano12234212DOI Listing

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