School of Chemistry and Chemical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Dalton Trans. 2023 Jun 6;52(22):7695-7700. doi: 10.1039/d3dt00915g.
Functionalized metal-organic frameworks (MOFs) have been used in a wide range of applications. Although the development of functionalized MOFs with plentiful open metal sites (defects) provides an avenue for targeted reactions, creating such defects remains challenging. Herein, a UiO-type MOF with hierarchical porosity and plentiful Zr-OH/OH sites (capping 35% Zr coordination sites) was synthesized within 40 min by a solid-phase synthesis route without the use of solvent and template. The optimal sample converted 5.7 mmol benzaldehyde to (dimethoxymethyl)benzene within 2 min at 25 °C. The turnover frequency number and activity per unit mass reached 2380 h and 8568 mmol g h, respectively, outperforming all previously reported catalysts at room temperature. This excellent catalytic activity was correlated with the defect density in functionalized UiO-66(Zr) and the accessibility of plentiful Zr-OH/OH sites as acid sites.
功能化金属有机骨架(MOFs)在许多领域都有应用。尽管具有丰富的开放金属位(缺陷)的功能化 MOFs 为靶向反应提供了途径,但创造这些缺陷仍然具有挑战性。在此,通过无溶剂和模板的固相合成路线,在 40 分钟内合成了具有分级多孔性和丰富 Zr-OH/OH 位(封端 35%Zr 配位位)的 UiO 型 MOF。最佳样品在 25°C 下 2 分钟内将 5.7mmol 苯甲醛转化为(二甲氧基甲基)苯,其周转频率数和单位质量活性分别达到 2380h 和 8568mmol g h ,在室温下超过了所有先前报道的催化剂。这种优异的催化活性与功能化 UiO-66(Zr)中的缺陷密度以及丰富的 Zr-OH/OH 位作为酸位的可及性有关。