纳米颗粒
水消毒
纳米技术
材料科学
化学工程
化学
天体生物学
环境科学
物理
环境工程
工程类
作者
Jian Wang,Jiahe Zhang,Yang Li,Xinghui Xia,Hengjing Yang,Jae‐Hong Kim,Wen Zhang
标识
DOI:10.1038/s41467-025-56339-2
摘要
Photocatalytic water disinfection technology is highly promising in off-grid areas due to abundant year-round solar irradiance. However, the practical use of powdered photocatalysts is impeded by limited recovery and inefficient inactivation of stress-resistant bacteria in oligotrophic surface water. Here we prepare a floatable monolithic photocatalyst with ZIF-8-NH2 loaded Ag single atoms and nanoparticles (AgSA+NP/ZIF). Atomically dispersed Ag sites form an Ag−N charge bridge, extending the lifetime of charge carriers and thereby promoting reactive oxygen species (ROS) generation. The photothermal effect of the plasmonic Ag nanoparticles reduces the bacterial resistance to ROS and impairs DNA repair capabilities. Under sunlight irradiation, the synergistic effect of Ag single atoms and nanoparticles enables 4.0 cm2 AgSA+NP/ZIF to achieve over 6.0 log inactivation (99.9999%) for the stress-resistant Escherichia coli (E. coli) in oligotrophic surface water within 30 min. Furthermore, 36 cm2 AgSA+NP/ZIF is capable of disinfecting at least 10.0 L of surface water, which meets the World Health Organization (WHO) recommended daily per capita drinking water allocation (8.0 L). This study presents a decentralized and sustainable approach for water disinfection in off-grid areas. Photocatalytic water disinfection holds great promise for off-grid areas due to abundant year-round solar irradiance. Here, authors present a floatable monolithic photocatalyst with ZIF-8-NH2 loaded Ag single atoms and nanoparticles for efficient and synergistic solar-driven water disinfection.
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