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具有二元结构的抗变形聚丙烯腈/聚砜复合膜用于有效空气过滤。

Anti-deformed Polyacrylonitrile/Polysulfone Composite Membrane with Binary Structures for Effective Air Filtration.

机构信息

Nanofibers Research Center, Modern Textile Institute, Donghua University , Shanghai 200051, China.

出版信息

ACS Appl Mater Interfaces. 2016 Mar;8(12):8086-95. doi: 10.1021/acsami.6b00359. Epub 2016 Mar 17.

Abstract

Airborne particle filtration proposed for fibers requires their assembly into porous structures with small pore size and low packing density. The ability to maintain structural stability upon deformation stress in service is essential to ensure a highly porous packing material that functions reliably; however, it has proven extremely challenging. Here, we report a strategy to create anti-deformed poly(ethylene oxide)@polyacrylonitrile/polysulfone (PEO@PAN/PSU) composite membranes with binary structures for effective air filtration by combining multijet electrospinning and physical bonding process. Our approach allows the ambigenous fiber framework including thin PAN nanofibers and fluffy PSU microfibers, through which run interpenetrating PEO bonding structures, to assemble into stable filtration medium with tunable pore size and packing density by facilely optimizing the bimodal fiber construction and benefiting from the PEO inspiration. With the integrated features of small pore size, high porosity, and robust mechanical properties (8.2 MPa), the resultant composite membrane exhibits high filtration efficiency of 99.992%, low pressure drop of 95 Pa, and desirable quality factor of 0.1 Pa(-1); more significantly, it successfully gets rid of the potential safety hazards caused by unexpected structural collapsing under service stress. The synthesis of PEO@PAN/PSU medium would not only make it a promising candidate for PM2.5 governance but also provide a versatile strategy to design and develop stable porous membranes for various applications.

摘要

空气传播颗粒过滤需要将纤维组装成具有小孔径和低堆积密度的多孔结构。在使用过程中承受变形应力时保持结构稳定性的能力对于确保可靠运行的高多孔填充材料至关重要;然而,这已经被证明是极具挑战性的。在这里,我们报告了一种通过结合多射流静电纺丝和物理结合工艺来创建具有二元结构的抗变形聚氧化乙烯@聚丙烯腈/聚砜(PEO@PAN/PSU)复合膜的策略,用于有效空气过滤。我们的方法允许包括细 PAN 纳米纤维和蓬松 PSU 微纤维的土著纤维框架通过互穿的 PEO 键合结构组装成稳定的过滤介质,可通过简便地优化双峰纤维结构并受益于 PEO 的启发来调节孔径和堆积密度。具有小孔径、高孔隙率和稳健机械性能(8.2 MPa)的复合膜表现出 99.992%的高过滤效率、95 Pa 的低压降和理想的质量因子 0.1 Pa(-1);更重要的是,它成功地消除了在使用过程中因结构意外坍塌而带来的潜在安全隐患。PEO@PAN/PSU 介质的合成不仅使其成为 PM2.5 治理的有前途的候选者,而且还为设计和开发用于各种应用的稳定多孔膜提供了一种通用策略。

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