Li Dawei, Liu Huizhong, Shen Ying, Wu Huiping, Liu Feng, Wang Lanlan, Liu Qingsheng, Deng Bingyao
Key Laboratory of Eco-Textiles (Ministry of Education), Nonwoven Technology Laboratory, Jiangnan University, Wuxi 214122, China.
Kunshan Sunshinetex New Material Co., Ltd., No.417 Sanxiang Road, Industry zone, Kunshan 215300, China.
Nanomaterials (Basel). 2020 Sep 10;10(9):1806. doi: 10.3390/nano10091806.
Electrospun nanofiber, showing large specific area and high porosity, has attracted much attention across various fields, especially in the field of air filtration. The small diameter contributes to the construction of filters with high-filtration efficiency for fine particulate matter (PM), however, along with an increase in air resistance. Herein, composited nanofiber aerogels (NAs), a truly three-dimensional (3D) derivative of the densely compacted electrospun mat, were constructed with the blocks of polytetrafluoroethylene-polyamideimide (PTFE-PAI) composite nanofiber and polyimide (PI) nanofiber. PI/PTFE-PAI NAs with hierarchically porous architecture and excellent mechanical properties have been obtained by thermally induced crosslink bonding. Results indicated that sintering at 400 °C for 30 min could complete the decomposition of polyethylene (PEO) and imidization of polyamic acid (PAA) into PI, as well as generate sufficient mechanical bonding between adjacent nanofibers in the NAs without extra additive. The well-prepared PI/PTFE-PAI NAs could withstand high temperature up to 500 °C. In addition, the filtration tests illustrated that the composite NAs had an excellent performance in PM filtration. More importantly, the filtration behavior could be adjusted to meet the requirements of various applications. The excellent thermal stability and high-filtration efficiency indicated its great potential in the field of high-temperature air filtration.
具有大比表面积和高孔隙率的电纺纳米纤维在各个领域都备受关注,尤其是在空气过滤领域。小直径有助于构建对细颗粒物(PM)具有高过滤效率的过滤器,然而,这同时也会导致空气阻力增加。在此,复合纳米纤维气凝胶(NAs)作为紧密压实的电纺毡的真正三维(3D)衍生物,由聚四氟乙烯 - 聚酰胺酰亚胺(PTFE - PAI)复合纳米纤维和聚酰亚胺(PI)纳米纤维块构建而成。通过热诱导交联键合获得了具有分级多孔结构和优异机械性能的PI/PTFE - PAI NAs。结果表明,在400℃烧结30分钟可以完成聚乙烯(PEO)的分解以及聚酰胺酸(PAA)亚胺化为PI,同时在NAs中相邻纳米纤维之间产生足够的机械键合,无需额外添加物。制备良好的PI/PTFE - PAI NAs能够承受高达500℃的高温。此外,过滤测试表明复合NAs在PM过滤方面具有优异性能。更重要的是,过滤行为可以进行调整以满足各种应用的需求。优异的热稳定性和高过滤效率表明其在高温空气过滤领域具有巨大潜力。