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用于环境应用的由溶剂蒸汽焊接的坚固聚酰亚胺纳米/微纤维气凝胶。

Robust polyimide nano/microfibre aerogels welded by solvent-vapour for environmental applications.

作者信息

Shen Ying, Li Dawei, Deng Bingyao, Liu Qingsheng, Liu Huizhong, Wu Tong

机构信息

Key Laboratory of Eco-Textiles (Ministry of Education), Nonwoven Technology Laboratory, Jiangnan University, Wuxi 214122, China.

The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA 30332, USA.

出版信息

R Soc Open Sci. 2019 Aug 7;6(8):190596. doi: 10.1098/rsos.190596. eCollection 2019 Aug.

Abstract

Due to the high porosity, resilience and ultra-low density, polymer nanofibre-derived aerogels (NFAs) have been widely investigated in recent years. However, welding of the fibrous networks of NFAs, which has been proved extremely essential to their structural performance, still remains a major challenge. Herein, electrospun polyimide (PI) nano/microfibres were used as building blocks to construct hierarchically porous aerogels through a solid-templating technique. By further welding the adjacent nano/microfibres at their cross-points in a controllable fashion by solvent-vapour, super elasticity was achieved for the aerogels, with a recoverable ultimate strain of 80%. It is noteworthy that this process is free from cross-linking, heating and significant structure changing (i.e. chemical structure, crystallinity and fibrous network). Additionally, the porous structure of PI nano/microfibre aerogels (PI-N/MFAs) could be tuned by adjusting the organization of microfibres from a disordered/ordered cellular to a uniform structure. The as-obtained aerogels showed ultra-low density (4.81 mg cm), high porosity (99.66%), and comparable or higher recoverable compressive strain and stress relative to the other nanofibre-based aerogels. Furthermore, we showed the potential of such an aerogel for particle or aerosol filtration. PI nanofibre aerogels composite filters (PI-NFACFs) manifested excellent performance in PM filtration (99.6% filtration efficiency with 115 Pa pressure drop). Therefore, this study brought a new perspective on the simple preparation of nanofibre-based aerogels for air filtration.

摘要

由于具有高孔隙率、弹性和超低密度,聚合物纳米纤维衍生气凝胶(NFAs)近年来受到了广泛研究。然而,NFAs纤维网络的焊接对其结构性能至关重要,但仍然是一个重大挑战。在此,静电纺聚酰亚胺(PI)纳米/微纤维被用作构建单元,通过固体模板技术构建分级多孔气凝胶。通过溶剂蒸汽以可控方式进一步焊接相邻纳米/微纤维的交叉点,气凝胶实现了超弹性,可恢复极限应变达80%。值得注意的是,该过程无需交联、加热且结构变化不大(即化学结构、结晶度和纤维网络)。此外,PI纳米/微纤维气凝胶(PI-N/MFAs)的多孔结构可通过调整微纤维的排列从无序/有序蜂窝状变为均匀结构来调节。所制备的气凝胶显示出超低密度(4.81 mg/cm)、高孔隙率(99.66%),相对于其他基于纳米纤维的气凝胶,其可恢复压缩应变和应力相当或更高。此外,我们展示了这种气凝胶在颗粒或气溶胶过滤方面的潜力。PI纳米纤维气凝胶复合过滤器(PI-NFACFs)在PM过滤方面表现出优异性能(过滤效率为99.6%,压降为115 Pa)。因此,本研究为基于纳米纤维的气凝胶用于空气过滤的简单制备带来了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b6b/6731741/6b218ecf2794/rsos190596-g1.jpg

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