Fernandes Soraia P S, Romero Vanesa, Espiña Begoña, Salonen Laura M
International Iberian Nanotechnology Laboratory (INL), Av. Mestre José Veiga, Braga, 4715-330, Portugal.
Department of Chemistry, QOPNA, University of Aveiro, 3810-193, Aveiro, Portugal.
Chemistry. 2019 May 7;25(26):6461-6473. doi: 10.1002/chem.201806025. Epub 2019 Feb 27.
Covalent organic frameworks (COFs) are attractive materials receiving increasing interest in the literature due to their crystallinity, large surface area, and pore uniformity. Their properties can be tailored towards specific applications by judicious design of COF building blocks, giving access to tailor-made pore sizes and surfaces. In this Concept article, developments in the field of COFs that have allowed these materials to be explored for contaminant adsorption are discussed. Strategies to obtain water-stable materials with highly ordered structures and large surface areas are reviewed. Post-synthetic modification approaches, by which pore surfaces can be tuned to target specific contaminants, are described. Recent advances in COF formulations, crucial for future implementation in adsorption devices, are highlighted. At the end, future challenges which need to be addressed to allow for the deployment of COFs for the capture of water contaminants will be discussed.
共价有机框架(COFs)是一类具有吸引力的材料,由于其结晶性、大表面积和孔道均匀性,在文献中受到越来越多的关注。通过对COF构建单元的合理设计,可以针对特定应用对其性能进行定制,从而获得定制的孔径和表面。在这篇概念文章中,讨论了COF领域的发展,这些发展使得这些材料可用于污染物吸附的探索。综述了获得具有高度有序结构和大表面积的水稳定材料的策略。描述了通过后合成修饰方法来调整孔表面以靶向特定污染物。强调了COF配方的最新进展,这对未来在吸附装置中的应用至关重要。最后,将讨论为使COF用于捕获水中污染物而需要解决的未来挑战。