Zhu Junfeng, Meng Xiaorong, Liu Wen, Qi Yabing, Jin Siyi, Huo Shanshan
College of Chemistry and Chemical Engineering, Xi'an University of Architecture and Technology Xi'an 710055 China
Research Institute of Membrane Separation Technology of Shaanxi Province Co., Ltd Xi'an 710055 China.
RSC Adv. 2022 Aug 3;12(33):21574-21581. doi: 10.1039/d2ra03747e. eCollection 2022 Jul 21.
We present an efficient and easy synthesis method for incorporating organocatalytic moieties into Zr-metal organic frameworks (Zr-MOFs). The catalytic activity and selectivity of the new chiral catalysts were improved by adjusting the aperture of the MOF cavities. The hole size of the Zr-MOF was modulated by adding acid and replacing bridge ligands during synthesis. The difunctional chiral units of amino acid-thiourea are anchored onto the Zr-MOF by a mild synthesis method from an isothiocyanate intermediate which could effectively avoid the racemization of chiral moieties in the synthesis process. By means of specific surface area measurement (BET), scanning electron microscopy (SEM) and powder X-ray Diffraction (PXRD), it was confirmed that Zr-MOFs with different pore sizes were synthesized without breaking the basic octahedral structure of the MOF. Finally, good yields (up to 83%) and ee values (up to 73%) were achieved with the new heterogeneous catalysts in 48 hours for the aldol reaction of 4-nitrobenzaldehyde with acetone. By contrast, using the catalyst support without modulating the synthesis, the yield (30%) and the ee-value (26%) were both low. Experiments have confirmed the important influence on the reaction selectivity of providing a suitable reaction environment by controlling the aperture of MOF cavities.
我们提出了一种将有机催化部分引入锆基金属有机框架(Zr-MOFs)的高效且简便的合成方法。通过调节MOF空腔的孔径,提高了新型手性催化剂的催化活性和选择性。在合成过程中,通过添加酸和替换桥连配体来调节Zr-MOF的孔径大小。氨基酸-硫脲双功能手性单元通过一种温和的合成方法从异硫氰酸酯中间体锚定在Zr-MOF上,这可以有效避免合成过程中手性部分的外消旋化。通过比表面积测量(BET)、扫描电子显微镜(SEM)和粉末X射线衍射(PXRD),证实合成了具有不同孔径的Zr-MOFs,且未破坏MOF的基本八面体结构。最后,对于4-硝基苯甲醛与丙酮的羟醛缩合反应,新型多相催化剂在48小时内实现了高达83%的产率和高达73%的对映体过量值(ee值)。相比之下,使用未经合成调节的催化剂载体时,产率(30%)和ee值(26%)都很低。实验证实了通过控制MOF空腔的孔径来提供合适的反应环境对反应选择性具有重要影响。