Solar-driven efficient heterogeneous subminute water disinfection nanosystem assembled with fingerprint MoS2

被引:25
|
作者
Tong Wu
Bofei Liu
Chong Liu
Jiayu Wan
Ankun Yang
Kai Liu
Feifei Shi
Jie Zhao
Zhiyi Lu
Guangxu Chen
Allen Pei
Harold Y. Hwang
Yi Cui
机构
[1] Stanford University,Department of Materials Science and Engineering
[2] Stanford University,Department of Applied Physics
[3] Stanford Institute for Materials and Energy Sciences,undefined
[4] SLAC National Accelerator Laboratory,undefined
来源
Nature Water | 2023年 / 1卷 / 5期
关键词
D O I
10.1038/s44221-023-00079-4
中图分类号
学科分类号
摘要
Although heterogeneous water disinfection can avoid secondary pollution and other shortcomings in homogeneous systems, its low disinfection efficiency seriously hinders its development. Here we successfully address the aforementioned issues of heterogeneous disinfection by developing discrete nanoflakes of (Al2O3@v-MoS2)/Cu/Fe3O4. Three exciting features are integrated into such a novel structure: bifacial vertically aligned nanofingerprint MoS2 grown on both sides of the light-transparent Al2O3 nanoflakes that can largely absorb sunlight, where both sides can operate simultaneously; a Cu-MoS2 junction that enhances charge separation for the efficient generation of reactive oxygen species; and magnetic Fe3O4 nanoparticles that have magnetic separation capability and conveniently regenerate after disinfection. The (Al2O3@v-MoS2)/Cu/Fe3O4 nanostructures reported herein exhibit outstanding water disinfection with thorough inactivation of over 5.7 log10 colony-forming units ml−1Escherichia coli within 1 min in real sunlight (the system thermal effect has little impact on disinfection performances) as well as facile separation and stable long cycle reuse, demonstrating broad application prospects.
引用
收藏
页码:462 / 470
页数:8
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