School of Safety Engineering, China University of Mining and Technology, Xuzhou 221116, China.
School of Materials Science and Physics, China University of Mining and Technology, Xuzhou 221116, China.
ACS Appl Mater Interfaces. 2023 Jun 7;15(22):26812-26823. doi: 10.1021/acsami.3c03932. Epub 2023 May 29.
High-performance air filtration materials are important for addressing the airborne pollutants. Herein, we propose an unprecedented access to biodegradable poly(lactic acid) (PLA)-based MOFilters with excellent filtering performance and antibacterial activity. The fabrication involved a stepwise in situ growth of zeolitic imidazolate framework-8 (ZIF-8) crystals at the surface of microfibrous PLA membranes, followed by mechanical polarization under high pressure and low temperature (5 MPa, 40 °C) to trigger the ordered alignment of dipoles in PLA chains and ZIF-8. The unique structural features allowed these PLA-based MOFilters to achieve an exceptional combination of excellent tensile properties, high dielectric constant (up to 2.4 F/m), and enhanced surface potential as high as 4 kV. Arising from the remarkable surface activity and electrostatic adsorption effect, a significant increase (from over 12% to nearly 20%) in PM filtration efficiency was observed for the PLA-based MOFilters compared to that of pure PLA counterparts, with weak relation to the airflow velocities (10-85 L/min). Moreover, the air resistance was controlled at a considerably low level for all the MOFilters, that is, below 183 Pa even at 85 L/min. It is worth noting that distinct antibacterial properties were achieved for the MOFilters, as illustrated by the inhibitive rates of 87 and 100% against and , respectively. The proposed concept of PLA-based MOFilters offers unprecedented multifunction integration, which may fuel the development of biodegradable versatile filters with high capturing and antibacterial performances yet desirable manufacturing feasibility.
高性能空气过滤材料对于解决空气中的污染物至关重要。在此,我们提出了一种前所未有的方法,即用可生物降解的聚乳酸(PLA)制备 MOFilter,其具有优异的过滤性能和抗菌活性。该制备方法涉及在微纤维 PLA 膜表面分步原位生长沸石咪唑酯骨架-8(ZIF-8)晶体,然后在高压和低温(5 MPa,40°C)下进行机械极化,以触发 PLA 链和 ZIF-8 中偶极子的有序排列。这种独特的结构特征使这些基于 PLA 的 MOFilter 具有优异的拉伸性能、高介电常数(高达 2.4 F/m)和增强的表面势(高达 4 kV)的优异组合。由于显著的表面活性和静电吸附效应,与纯 PLA 相比,基于 PLA 的 MOFilter 的 PM 过滤效率显著提高(从超过 12%增加到近 20%),而与气流速度(10-85 L/min)的关系较弱。此外,所有 MOFilter 的空气阻力都控制在相当低的水平,即使在 85 L/min 时也低于 183 Pa。值得注意的是,MOFilter 具有明显的抗菌性能,对 和 的抑制率分别达到 87%和 100%。基于 PLA 的 MOFilter 的提出概念提供了前所未有的多功能集成,这可能为具有高捕获和抗菌性能且具有理想制造可行性的可生物降解多功能过滤器的发展提供动力。