Szufla Monika, Choroś Aleksandra, Nitek Wojciech, Matoga Dariusz
Faculty of Chemistry, Jagiellonian University, 30-387, Kraków, Gronostajowa 2, Poland.
Chemistry. 2022 Jul 1;28(37):e202200835. doi: 10.1002/chem.202200835. Epub 2022 May 23.
By using the strategy of pre-assembly chlorosulfonation applied to a linker precursor, the first sulfonated zirconium metal-organic framework (JUK-14) with two-dimensional (2D) structure, was synthesized. Single-crystal X-ray diffraction reveals that the material is built of Zr O (OH) (COO) oxoclusters, doubly 4-connected by angular dicarboxylates, and stacked in layers spaced 1.5 nm apart by the presence of sulfonic groups. JUK-14 exhibits excellent hydrothermal stability, permanent porosity confirmed by gas adsorption studies, and shows high (>10 S/cm) and low (<10 S/cm) proton conductivity under humidified and anhydrous conditions, respectively. Post-synthesis inclusion of imidazole improves the overall conductivity increasing it to 1.7×10 S/cm at 60 °C and 90 % relative humidity, and by 3 orders of magnitude at 160 °C. The combination of 2D porous nature with robustness of zirconium MOFs offers new opportunities for exploration of the material towards energy and environmental applications.
通过将预组装氯磺化策略应用于连接体前体,合成了首例具有二维(2D)结构的磺化锆基金属有机框架(JUK-14)。单晶X射线衍射表明,该材料由ZrO(OH)(COO)氧簇构成,通过角形二羧酸酯进行双重四连接,并由于磺酸基团的存在而以1.5 nm的间距堆积成层。JUK-14表现出优异的水热稳定性,气体吸附研究证实其具有永久孔隙率,并且在加湿和无水条件下分别显示出高(>10 S/cm)和低(<10 S/cm)的质子传导率。合成后引入咪唑可提高整体传导率,在60 °C和90 %相对湿度下将其提高至1.7×10 S/cm,在160 °C下提高3个数量级。二维多孔性质与锆基金属有机框架的坚固性相结合,为探索该材料在能源和环境应用方面提供了新机遇。