Otake Ken-Ichi, Ahn Sol, Knapp Julia, Hupp Joseph T, Notestein Justin M, Farha Omar K
Inorg Chem. 2021 Feb 15;60(4):2457-2463. doi: 10.1021/acs.inorgchem.0c03364. Epub 2021 Jan 26.
Heterogeneous catalysts supported on metal-organic frameworks (MOFs), which possess uniform porosity and crystallinity, have attracted significant interest for recent years due to the ease of active-site characterization via X-ray diffraction and the subsequent relation of the active site structure to the catalytic activity. We report the syntheses, structures, and oxidation catalytic activities of single-ion iron catalysts incorporated into the zirconium MOF . Single-ion iron catalysts with different counteranions were anchored onto the Zr node through postsynthetic solvothermal deposition. Crystallographic characterization of the resulting MOFs ( and ) revealed that, while both frameworks have similar Fe coordination, the distance between Fe and the Zr node differs significantly between the two. The product rate profiles of the two catalysts for vapor-phase cyclohexene epoxidation demonstrate different initial rates and product formations, likely originating from the different Fe-O distances.
负载于金属有机框架(MOF)上的多相催化剂具有均匀的孔隙率和结晶度,近年来因其易于通过X射线衍射对活性位点进行表征以及活性位点结构与催化活性之间的后续关系而备受关注。我们报告了掺入锆基MOF中的单离子铁催化剂的合成、结构和氧化催化活性。通过合成后溶剂热沉积法,将带有不同抗衡阴离子的单离子铁催化剂锚定在Zr节点上。对所得MOF( 和 )的晶体学表征表明,虽然两种框架具有相似的Fe配位,但两者之间Fe与Zr节点的距离差异显著。两种催化剂用于气相环己烯环氧化的产物速率曲线显示出不同的初始速率和产物形成情况,这可能源于不同的Fe-O距离。