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Visible-light-driven antibacterial photocatalyst based on Ag nanoparticle-decorated N-vacancy g-C3N4nanosheets
Yuanyuan Chen1, Qian Song1, Mingyue Zheng1
1School of Medical Laboratory, Qilu Medical University, Zibo City, People's Republic of China.
Abstract:
The rapid rise of antibiotic resistance threatens global health, highlighting the need for new antimicrobial strategies. Here, we investigated nitrogen vacancies and Ag nanoparticles decoration in carbon nitride (Ag-g-C3N4-V). Nitrogen vacancies optimized the electronic structure, boosting light absorption and charge separation. Ag nanoparticles induced a synergistic effect via localized surface plasmon resonance and the conjugated C3N4network, enhancing visible-light photocatalysis. The composite promoted hydrogen peroxide (H2O2) generation, a reactive oxygen species with antibacterial activity. The incorporation of Ag synergistically coupled H2O2generation with Ag+release, leading to enhanced bactericidal performance. Treatment with Ag-g-C3N4-V reduces the survival rates ofE. coliandS. aureusby approximately 39% and 58% respectively compared to the control group; under light conditions, Ag-g-C3N4-V lowers the survival rates ofE. coliandS. aureusto only 16% and 6%, showing a more remarkable bactericidal effect. This work offers a strategy for designing multifunctional photocatalysts against bacterial infections with potential biomedical applications.
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