Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering , South China University of Technology , Guangzhou 510641 , P. R. China.
ACS Appl Mater Interfaces. 2018 Oct 24;10(42):36047-36057. doi: 10.1021/acsami.8b14118. Epub 2018 Oct 11.
The engineering of highly stable metal-organic frameworks (MOFs) will unveil the intrinsic potential of these materials for practical applications, especially for heterogeneous catalyzes. However, it is fairly challenging to rationally design robust MOFs serving as highly effective and reusable heterogeneous catalysts. Here, for the first time, we report the construction of four robust UiO-type chiral zirconium-metallosalen frameworks, denoted ZSF-1-4. Single-crystal X-ray-diffraction reveals that the frameworks consist of twelve-connected ZrO clusters with privileged chiral metallosalen ligands anchored at ideal positions, generating confined chiral cages that enable synergistic activation. Unlike UiO-68 that is highly sensitive to aqueous solutions, ZSF-1-4 exhibit excellent chemical stability in aqueous solutions with a wide range of pH owing to the abundant hydrophobic groups within metallosalen ligands. These features render ZSF-1 and ZSF-2 to be excellent recycled heterogeneous catalysts for the conversion of imitated industrial CO with epoxides into cyclic carbonates with the highest reported turnover numbers in Zr-MOFs. With regard to asymmetric catalysis, ZSF-3 and ZSF-4 can effectively catalyze C-H azidation reaction in water medium with ee value up to 94%. Moreover, these robust ZSFs can be further extended to other analogues with various metal centers through demetallization-remetallization strategy, which renders them to be an excellent platform for broader fields.
高度稳定的金属有机骨架(MOFs)的工程化将揭示这些材料在实际应用中的固有潜力,特别是在多相催化方面。然而,合理设计作为高效且可重复使用的多相催化剂的坚固 MOFs 是相当具有挑战性的。在这里,我们首次报告了四个坚固的 UiO 型手性锆金属水杨醛骨架的构建,分别表示为 ZSF-1-4。单晶 X 射线衍射表明,该骨架由十二连接的 ZrO 簇组成,具有特权手性金属水杨醛配体固定在理想位置,产生受限的手性笼,从而实现协同活化。与对水溶液高度敏感的 UiO-68 不同,由于金属水杨醛配体中存在丰富的疏水性基团,ZSF-1-4 在具有广泛 pH 值的水溶液中表现出优异的化学稳定性。这些特性使 ZSF-1 和 ZSF-2 成为出色的可回收多相催化剂,可将模拟工业 CO 与环氧化物转化为环状碳酸酯,在 Zr-MOFs 中报告的最高转化率数。就不对称催化而言,ZSF-3 和 ZSF-4 可以在水介质中有效催化 C-H 叠氮化反应,ee 值高达 94%。此外,这些坚固的 ZSF 可以通过脱金属-再金属化策略进一步扩展到具有各种金属中心的其他类似物,这使它们成为更广泛领域的优秀平台。