Qiao Shiya, Kang Shuai, Zhu Jing, Wang Yan, Yu Junrong, Hu Zuming
College of Materials Science and Engineering, Donghua University, Shanghai 201620, People's Republic of China.
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai 201620, People's Republic of China.
J Hazard Mater. 2021 Aug 5;415:125739. doi: 10.1016/j.jhazmat.2021.125739. Epub 2021 Mar 24.
Polyimide nanofiber (PINF) aerogel materials have received extensive attention as heat insulation, sensors and filtration media due to their excellent thermodynamic properties and unique porous structure. However, PINF must be difficult to disperse in organic solvents (dioxane or dimethyl sulfoxide) and dimensional instability has been regarded as issues that limits the preparation of PINF aerogels, especially in the water. So, it is of great significance to prepare polyimide aerogels with stable structure using water as a dispersant. In this work, the electrospun polyimide nanofiber precursor (polyamic acid (PAA) nanofiber (PAANF)) is uniformly dispersed in water, and triethylamine is added to terminated PAA oligomer as a binder. The resultant PINF aerogel has excellent mechanical properties with outstanding elasticity and a maximum compressive stress of 7.03 kpa at 50% strain. Furthermore, due to the extremely high porosity (98.4%) and hierarchical porous structure, the aerogel exhibits a high filtration efficiency (99.83%) for PM2.5, while the pressure drop is lower than that of the corresponding nanofiber membrane materials, which will facilitate its application in high temperature filtration and other fields.
聚酰亚胺纳米纤维(PINF)气凝胶材料因其优异的热力学性能和独特的多孔结构,作为隔热材料、传感器和过滤介质受到了广泛关注。然而,PINF在有机溶剂(二氧六环或二甲基亚砜)中难以分散,尺寸不稳定性一直被视为限制PINF气凝胶制备的问题,尤其是在水中。因此,以水为分散剂制备结构稳定的聚酰亚胺气凝胶具有重要意义。在这项工作中,将静电纺丝聚酰亚胺纳米纤维前驱体(聚酰胺酸(PAA)纳米纤维(PAANF))均匀分散在水中,并加入三乙胺使PAA低聚物封端作为粘结剂。所得的PINF气凝胶具有优异的力学性能,弹性突出,在50%应变下的最大压缩应力为7.03 kPa。此外,由于极高的孔隙率(98.4%)和分级多孔结构,该气凝胶对PM2.5表现出高过滤效率(99.83%),而压降低于相应的纳米纤维膜材料,这将有利于其在高温过滤等领域的应用。