College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou 310014, China.
College of Environment, Zhejiang University of Technology, Hangzhou 310014, China.
Water Res. 2024 Aug 1;259:121888. doi: 10.1016/j.watres.2024.121888. Epub 2024 Jun 4.
The development of effective water purification systems is crucial for controlling and remediating environmental pollution, especially in terms of sterilization. Herein, we demonstrate elaborately designed composite nanosheets with a sandwich structure, composed of two-dimensional (2D) TiC MXene nanosheet core and conformal ZIF-8 ultrathin outer layers, and their potential applications in photocatalytic sterilization. The study results indicate that the conformal ZIF-8-MXene nanosheet exhibits an expanded light absorption range (826 nm), improved photothermal conversion efficiency (6.2 °C s), and photocurrent response, thus boosting photocatalytic sterilization efficiency (6.63 log CFU mL) against Escherichia coli under simulated sunlight within 90 min. Interestingly, 2D ZIF-8 layers exhibit positive zeta potential (19 mV), good hydrophilicity (40.6°), and local photogenerated-hole accumulation, possessing efficient bacteria-trapping efficiency. Membrane filters fabricated from optimized composite nanosheets exhibit an outstanding bacteria-trapping and sterilization efficiency (almost 100 %) against Escherichia coli under simulated sunlight within 30 min of the flow photocatalytic experiments. This work not only presents a rational structural design of the conformal and ultrathin anchoring of ZIF-8 onto a 2D conductive material for bacteria-trapping and sterilization, but also opens new opportunities for using metal-organic frameworks in photocatalytic disinfection of drinking water.
高效净水系统的开发对于控制和修复环境污染至关重要,特别是在杀菌方面。本文详细介绍了具有三明治结构的复合纳米片的精心设计,该复合纳米片由二维(2D)TiC MXene 纳米片核心和共形 ZIF-8 超薄外层组成,并展示了其在光催化杀菌方面的潜在应用。研究结果表明,共形 ZIF-8-MXene 纳米片具有扩展的光吸收范围(826nm)、提高的光热转换效率(6.2°C s)和光电流响应,从而在模拟阳光下的 90 分钟内将光催化杀菌效率提高至(6.63log CFU mL),对大肠杆菌有效。有趣的是,2D ZIF-8 层具有正的 zeta 电位(19 mV)、良好的亲水性(40.6°)和局部光生空穴积累,具有高效的细菌捕获效率。优化后的复合纳米片制成的膜过滤器在模拟阳光下的流动光催化实验中,对大肠杆菌具有出色的细菌捕获和杀菌效率(几乎 100%),仅需 30 分钟。这项工作不仅提出了一种合理的结构设计,即共形和超薄地将 ZIF-8 锚定在二维导电材料上,用于细菌捕获和杀菌,而且为金属有机骨架在饮用水光催化消毒中的应用开辟了新的机会。