Gong Yu, Huang Shaofeng, Lei Zepeng, Wayment Lacey, Chen Hongxuan, Zhang Wei
Department of Chemistry, University of Colorado Boulder, Boulder, Colorado, 80309, USA.
Chemistry. 2023 Nov 13;29(63):e202302135. doi: 10.1002/chem.202302135. Epub 2023 Oct 2.
Double-walled covalent organic frameworks, consisting of two same building blocks parallel to each other forming ladder-shape linkers, could enhance the stability of the frameworks and increase the density of functional sites, thus making them suitable for various applications. In this study, two double-walled covalent organic frameworks, namely DW-COF-1 and DW-COF-2, were successfully synthesized via imine condensation. The resulting DW-COFs exhibited a honeycomb topology, high crystallinity and stability. Particularly, DW-COF-2 showed excellent resistance toward boiling water, strong acid, and strong base, due to its double-walled structure, which limits the exposure of labile imine bonds to external chemical environments. The DW-COFs showed high porosity near 900 m /g, making them suitable for gas storage/separation. The selective gas adsorption experiments showed that at 273 K and 1 atm pressure, DW-COF-1 and DW-COF-2 exhibited a good IAST selectivity towards CO /N (15/85) adsorption, with selectivity values of 121.3 and 56.4 for CO over N , respectively.
双壁共价有机框架由两个相互平行的相同构建块组成,形成梯状连接体,可增强框架的稳定性并增加功能位点的密度,从而使其适用于各种应用。在本研究中,通过亚胺缩合成功合成了两种双壁共价有机框架,即DW-COF-1和DW-COF-2。所得的DW-COF呈现出蜂窝拓扑结构、高结晶度和稳定性。特别地,DW-COF-2由于其双壁结构限制了不稳定亚胺键与外部化学环境的接触,因而对沸水、强酸和强碱表现出优异的耐受性。DW-COF的孔隙率接近900 m/g,使其适用于气体存储/分离。选择性气体吸附实验表明,在273 K和1 atm压力下,DW-COF-1和DW-COF-2对CO/N(15/85)吸附表现出良好的理想吸附溶液理论(IAST)选择性,CO对N的选择性值分别为121.3和56.4。