Havelková Lucie, Bashta Bogdana, Hašková Alena, Vagenknechtová Alice, Vyskočilová Eliška, Brus Jiří, Sedláček Jan
Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Hlavova 2030, 128 43 Prague, Czech Republic.
Department of Gaseous and Solid Fuels and Air Protection, University of Chemistry and Technology in Prague, Technická 5, 166 28 Prague, Czech Republic.
Polymers (Basel). 2023 Feb 1;15(3):743. doi: 10.3390/polym15030743.
Two series of hyper-cross-linked microporous polyacetylene networks containing either -[CH=C(CH=O)]- or -[CH=C(CHOH)]- monomeric units are reported. Networks are prepared by chain-growth copolymerization of acetal-protected propargyl aldehyde and acetal-protected propargyl alcohol with a 1,3,5-triethynylbenzene cross-linker followed by hydrolytic deprotection/detemplating. Deprotection not only liberates reactive CH=O and CHOH groups in the networks but also modifies the texture of the networks towards higher microporosity and higher specific surface area. The final networks with CH=O and CHOH groups attached directly to the polyene main chains of the networks have a specific surface area from 400 to 800 m/g and contain functional groups in a high amount, up to 9.6 mmol/g. The CH=O and CHOH groups in the networks serve as active centres for the reversible capture of CO and water vapour. The water vapour capture capacities of the networks (up to 445 mg/g at 297 K) are among the highest values reported for porous polymers, making these materials promising for cyclic water harvesting from the air. Covalent modification of the networks with ()-(+)-3-aminopyrrolidine and ()-(+)-2-methylbutyric acid enables the preparation of porous chiral networks and shows networks with CH=O and CHOH groups as reactive supports suitable for the anchoring of various functional molecules.
报道了含有-[CH=C(CH=O)]-或-[CH=C(CHOH)]-单体单元的两个系列的超交联微孔聚乙炔网络。通过缩醛保护的炔丙醛和缩醛保护的炔丙醇与1,3,5-三乙炔基苯交联剂进行链增长共聚,然后进行水解脱保护/脱模板来制备网络。脱保护不仅释放了网络中具有反应活性的CH=O和CHOH基团,还使网络结构向更高的微孔率和更高的比表面积转变。最终的网络中,CH=O和CHOH基团直接连接到网络的多烯主链上,比表面积为400至800 m²/g,且含有大量官能团,高达9.6 mmol/g。网络中的CH=O和CHOH基团作为可逆捕获CO和水蒸气的活性中心。这些网络的水蒸气捕获容量(在297 K时高达445 mg/g)是多孔聚合物报道的最高值之一,这使得这些材料有望用于从空气中循环收集水。用()- (+)-3-氨基吡咯烷和()- (+)-2-甲基丁酸对网络进行共价修饰能够制备多孔手性网络,并表明含有CH=O和CHOH基团的网络作为适合锚定各种功能分子的反应性载体。