Xiao Chengming, Yao Yiyuan, Guo Xin, Qi Junwen, Zhu Zhigao, Zhou Yujun, Yang Yue, Li Jiansheng
Key Laboratory of New Membrane Materials, Ministry of Industry and Information Technology, School of Environmental and Biological Engineering, Nanjing University of Science and Technology, Nanjing, 210094, P. R. China.
Small. 2024 Aug;20(32):e2311881. doi: 10.1002/smll.202311881. Epub 2024 Feb 19.
Shaping covalent organic frameworks (COFs) into macroscopic objects with robust mechanical properties and hierarchically porous structure is of great significance for practical applications but remains formidable and challenging. Herein, a general and scalable protocol is reported to prepare ultralight and robust pure COF fiber aerogels (FAGs), based on the epitaxial growth synergistic assembly (EGSA) strategy. Specifically, intertwined COF nanofibers (100-200 nm) are grown in situ on electrospinning polyacrylonitrile (PAN) microfibers (≈1.7 µm) containing urea-based linkers, followed by PAN removal via solvent extraction to obtain the hollow COF microfibers. The resultant COF FAGs possess ultralow density (14.1-15.5 mg cm) and hierarchical porosity that features both micro-, meso-, and macropores. Significantly, the unique interconnected structure composed of nanofibers and hollow microfibers endows the COF FAGs with unprecedented mechanical properties, which can fully recover at 50% strain and be compressed for 20 cycles with less than 5% stress degradation. Moreover, the aerogels exhibit excellent capacity for organic solvent absorption (e.g., chloroform uptake of >90 g g). This study opens new avenues for the design and fabrication of macroscopic COFs with excellent properties.
将共价有机框架(COFs)制成具有强大机械性能和分级多孔结构的宏观物体对于实际应用具有重要意义,但仍然极具难度和挑战性。在此,报道了一种基于外延生长协同组装(EGSA)策略制备超轻且坚固的纯COF纤维气凝胶(FAGs)的通用且可扩展的方案。具体而言,相互缠绕的COF纳米纤维(100 - 200纳米)原位生长在含有脲基连接体的静电纺聚丙烯腈(PAN)微纤维(约1.7微米)上,随后通过溶剂萃取去除PAN以获得中空COF微纤维。所得的COF FAGs具有超低密度(14.1 - 15.5毫克/立方厘米)以及兼具微孔、介孔和大孔的分级孔隙率。值得注意的是,由纳米纤维和中空微纤维组成的独特互连结构赋予了COF FAGs前所未有的机械性能,其在50%应变下可完全恢复,并且能够承受20次压缩循环,应力降解小于5%。此外,气凝胶表现出优异的有机溶剂吸收能力(例如,对氯仿的吸收量>90克/克)。这项研究为设计和制造具有优异性能的宏观COFs开辟了新途径。