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仿生纤维叶-脉膜实现单向水渗透和有效抗菌 PM 过滤。

Biomimetic Fibrous Leaf-Vein Membrane Enabling Unidirectional Water Penetration and Effective Antibacterial PM Filtration.

机构信息

College of Textile and Clothing, Qingdao University, #308, Ningxia Road, Qingdao 266071, P. R. China.

Advanced Medical Care and Protection Technology Research Center, Qingdao University, #308 Ningxia Road, Qingdao 266071, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 17;14(32):37192-37203. doi: 10.1021/acsami.2c10254. Epub 2022 Aug 2.

Abstract

Air pollution induced by pathogenic particulate matter (PM) has posed a serious threat to public health worldwide. Advanced air filters are thus required, not only exhibiting high PM capture efficiency, low breathing resistance, and high internal moisture transferring performance but also isolating and inactivating external pathogenic aerosols. In this study, we demonstrated a facile approach to construct a biomimetic fibrous leaf-vein membrane with unidirectional water penetration and effective antibacterial PM filtration by one-step electrospinning of poly(vinylidene fluoride) (PVDF)-based multilayer nanofibers. With ultrathin fibers penetrating the skeletal framework of bimodal thick fibers, the membranes showed gradient interconnected porous structures and achieved a highly efficient and stable (in an acid and alkali environment) PM interception (>99.98%) with low air drag (51-71 Pa). In addition, the gradient narrow pores of the membranes contributed to a gradient higher hydrophilicity. The subsequent unidirectional water motion effectively isolates pathogenic aerosols typically generated by external individuals or ultrafast water penetration from the inverse face. Moreover, the membranes demonstrated an antibacterial efficacy (>99.99%) in a 5 min contact, inactivating the intercepted airborne pathogens efficiently. The test results proved that the proposed membranes were promising advanced air filters for respirator applications.

摘要

致病颗粒物质(PM)引起的空气污染对全球公众健康构成了严重威胁。因此,需要先进的空气过滤器,不仅要具有高的 PM 捕获效率、低的呼吸阻力和高的内部水分传递性能,还要能够隔离和灭活外部的致病气溶胶。在本研究中,我们展示了一种简便的方法,通过一步静电纺丝制备聚偏二氟乙烯(PVDF)基多层纳米纤维,构建了具有单向水渗透和有效抗菌 PM 过滤功能的仿生纤维叶脉膜。超薄纤维贯穿双模态厚纤维的骨架,膜表现出梯度连通多孔结构,实现了高效且稳定的 PM 拦截(>99.98%),空气阻力低(51-71 Pa)。此外,膜的梯度窄孔有助于实现更高的梯度亲水性。随后的单向水流运动有效地隔离了通常由外部个体产生的致病气溶胶或超快的反向渗透水。此外,该膜在 5 分钟的接触时间内表现出>99.99%的抗菌功效,有效地使截留的空气传播病原体失活。测试结果证明,所提出的膜是用于呼吸防护应用的有前途的先进空气过滤器。

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