Faculty of Chemistry, Biological and Chemical Research Centre, University of Warsaw , Żwirki i Wigury 101, 02-089 Warszawa, Poland.
ACS Appl Mater Interfaces. 2017 Oct 4;9(39):33956-33967. doi: 10.1021/acsami.7b09914. Epub 2017 Sep 20.
Metal-organic frameworks (MOFs) decorated with stable organic radicals are highly promising materials for redox catalysis. Unfortunately however, the synthesis of chemically robust MOFs typically requires harsh solvothermal conditions, which are not compatible with organic radicals. Here, we describe the synthesis of two isoreticular families of stable, mixed component, zirconium MOFs with UiO-66 and UiO-67 structures and controlled amounts of covalently attached TEMPO radicals. The materials were obtained using a relatively low-temperature, HCl-modulated de novo method developed by Hupp and Farha and shown to contain large amounts of missing cluster defects, forming nanodomains of the reo phase with 8-connected clusters. In the extreme case of homoleptic UiO-67-TEMPO(100%), the material exists as an almost pure reo phase. Large voids due to missing clusters and linkers allowed these materials to accommodate up to 2 times more of bulky TEMPO substituents than theoretically predicted for the idealized structures and proved to be beneficial for catalytic activity. The TEMPO-appended MOFs were shown to be highly active and recyclable catalysts for selective aerobic oxidation of a broad range of primary and secondary alcohols under exceptionally mild conditions (room temperature, atmospheric pressure of air). The influence of various parameters, including the pore size and TEMPO content, on the catalytic activity was also comprehensively investigated.
金属-有机骨架(MOFs)用稳定的有机自由基修饰后,是用于氧化还原催化的很有前途的材料。然而,具有化学稳定性的 MOFs 的合成通常需要苛刻的溶剂热条件,这与有机自由基不相容。在这里,我们描述了两种具有 UiO-66 和 UiO-67 结构的稳定、混合成分的锆 MOFs 的同构族的合成,其具有可控数量的共价键合的 TEMPO 自由基。这些材料是使用 Hupp 和 Farha 开发的相对低温、HCl 调节的从头合成方法获得的,并且被证明含有大量缺失的簇缺陷,形成 reo 相的纳米域,其中包含 8 连接的簇。在 HOMOLEPTIC UiO-67-TEMPO(100%)的极端情况下,该材料几乎完全为 reo 相。由于缺失的簇和连接体导致的大空隙使得这些材料能够容纳比理想结构理论预测的多两倍的大体积 TEMPO 取代基,这被证明对催化活性有益。添加 TEMPO 的 MOFs 被证明是在非常温和的条件下(室温、空气的大气压)用于广泛的伯醇和仲醇的选择性有氧氧化的高活性和可回收催化剂。还全面研究了各种参数(包括孔径和 TEMPO 含量)对催化活性的影响。