Jiang Wei-Ling, Huang Bin, Wu Meng-Xiang, Zhu Ye-Kai, Zhao Xiao-Li, Shi Xueliang, Yang Hai-Bo
Shanghai Key Laboratory of Green Chemistry and Chemical Processes, School of Chemistry and Molecular Engineering, East China Normal University, 3663N. Zhongshan Road, Shanghai, 200062, P. R. China.
Chem Asian J. 2021 Dec 1;16(23):3985-3992. doi: 10.1002/asia.202100883. Epub 2021 Oct 26.
Metal-organic frameworks (MOFs) consisting of organic radicals are of great interest because they have exhibited unique and intriguing optical, electronic, magnetic, and chemo-catalytic properties, and thus have demonstrated great potential applications in optical, electronic, and magnetic devices, and as catalysts. However, the preparation of MOFs bearing stable organic radicals is very challenging because most organic radicals are highly reactive and difficult to incorporate into the framework of MOFs. Herein we reported a post-synthetic modification strategy to prepare a novel MOF containing phenazine radical cations, which was used as heterogeneous catalyst for aza-Diels-Alder reaction. The zinc-based metal-organic framework Zn (PHZ) (dabco) (N) was successfully synthesized from 5,10-di(4-benzoic acid)-5,10-dihydrophenazine (PHZ), triethylene diamine (dabco) with Zn(NO ) ⋅ 6H O by solvothermal method. The as-synthesized MOF N was partially oxidized by AgSbF to form MOF R containing ∼10% phenazine radical cation species. The resultant MOF R was found to keep the original crystal type of N and very persistent under ambient conditions. Consequently, MOF R was successfully employed in radical cation-catalyzed aza-Diels-Alder reactions with various imine substrates at room temperature with high reaction conversion. Moreover, heterogeneous catalyst MOF R was reusable up to five times without much loss of catalytic activity, demonstrating its excellent stability and recyclability. Therefore, the post-synthetic modification developed in this work is expected to become a versatile strategy to prepare radical-based MOFs for the application of heterogeneous catalysts in organic synthesis.
由有机自由基组成的金属有机框架材料(MOFs)备受关注,因为它们展现出独特且引人入胜的光学、电子、磁性和化学催化性能,因此在光学、电子和磁性器件以及作为催化剂方面展现出巨大的潜在应用价值。然而,制备含有稳定有机自由基的MOFs极具挑战性,因为大多数有机自由基具有高反应活性,难以纳入MOFs的框架中。在此,我们报道了一种后合成修饰策略,用于制备一种含有吩嗪自由基阳离子的新型MOF,该MOF被用作氮杂狄尔斯-阿尔德反应的多相催化剂。通过溶剂热法,以5,10-二(4-苯甲酸)-5,10-二氢吩嗪(PHZ)、三亚乙基二胺(dabco)与Zn(NO₃)₂·6H₂O成功合成了锌基金属有机框架Zn(PHZ)(dabco)(N)。合成的MOF N被AgSbF₆部分氧化,形成含有约10%吩嗪自由基阳离子物种的MOF R。结果发现,所得的MOF R保持了N的原始晶体类型,并且在环境条件下非常稳定。因此,MOF R成功地用于在室温下与各种亚胺底物进行的自由基阳离子催化的氮杂狄尔斯-阿尔德反应,具有高反应转化率。此外,多相催化剂MOF R可重复使用多达五次,而催化活性没有太大损失,证明了其优异的稳定性和可回收性。因此,这项工作中开发的后合成修饰有望成为一种通用策略,用于制备基于自由基的MOFs,以用于有机合成中的多相催化剂应用。