Guo Zheyuan, Jiang Haifei, Wu Hong, Zhang Leilang, Song Shuqing, Chen Yu, Zheng Chenyang, Ren Yanxiong, Zhao Rui, Li Yonghong, Yin Yan, Guiver Michael D, Jiang Zhongyi
Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.
Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin, 300072, China.
Angew Chem Int Ed Engl. 2021 Dec 20;60(52):27078-27085. doi: 10.1002/anie.202112271. Epub 2021 Nov 17.
Ionic covalent organic framework nanosheets (iCOFNs) with long-range ordered and mono-dispersed ionic groups hold great potential in many advanced applications. Considering the inherent drawbacks of oil-water biphase method, herein, we explore an oil-water-oil triphase method based on phase engineering strategy for the bottom-up synthesis of iCOFNs. The middle water phase serves as a confined reaction region, and the two oil phases are reservoirs for storing and supplying monomers to the water phase. A large aqueous space and low monomer concentration lead to the anisotropic gradual growth of iCOFNs into few-layer thickness, large lateral size, and high crystallinity. Notably, the resulting three cationic and anionic iCOFNs exhibit ultra-high aspect ratios of up to 20,000. We further demonstrate their application potential by processing into ultrathin defect-free COF membranes for efficient biogas separation. Our triphase method may offer an alternative platform technology for the synthesis and innovative applications of iCOFNs.
具有长程有序且单分散离子基团的离子共价有机框架纳米片(iCOFNs)在许多先进应用中具有巨大潜力。考虑到油水双相法的固有缺点,在此,我们基于相工程策略探索了一种用于iCOFNs自下而上合成的油-水-油三相法。中间水相作为受限反应区域,两个油相是用于向水相存储和供应单体的储库。较大的水相空间和较低的单体浓度导致iCOFNs呈各向异性逐渐生长为几层厚度、大横向尺寸和高结晶度。值得注意的是,所得的三种阳离子型和阴离子型iCOFNs展现出高达20,000的超高纵横比。我们通过将其加工成用于高效沼气分离的超薄无缺陷COF膜,进一步证明了它们的应用潜力。我们的三相法可能为iCOFNs的合成和创新应用提供一种替代平台技术。