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Fe-doped H3PMo12O40 immobilized on covalent organic frameworks (Fe/PMA@COFs): a heterogeneous catalyst for the epoxidation of cyclooctene with H2O2

机译:固定在共价有机骨架(Fe / PMA @ COFs)上的Fe掺杂的H3PMo12O40:一种用于环辛烯与H2O2环氧化的非均相催化剂

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Covalent organic frameworks (COFs) have arisen as one kind of devisable porous organic polymer that has attracted immense attention in catalytic applications. In this work, we prepared cost-effective imine-based COFs (COF-300, COF-LZU1 and CIN-1) via a reaction kettle operated in place of a traditional sealed Pyrex tube. Then, phosphomolybdic acid (PMA) and iron ions were immobilized on the COF supports by impregnation; the resulting frameworks were denoted as Fe/PMA@COFs (Fe/PMA@COF-LZU1, Fe/PMA@CIN-1 and Fe/PMA@COF-300). A series of characterization results demonstrated that the PMA and iron ions were uniformly dispersed on the surface/cavities of the COFs. The catalytic properties of the obtained Fe/PMA@COFs were investigated in the epoxidation of cyclooctene with H _(2) O _(2) as the oxidant. The experimental results show that the Fe/PMA@CIN-1 composite can act as an efficient heterogeneous catalyst for the epoxidation of cyclooctene. The intramolecular charge transfer between the COFs and the dual sites (PMA and Fe ions), the spatial structure and the nitrogen content of the COFs played critical roles in dispersing and stabilizing the active species, which are closely connected with the activity and stability of the catalysts. A novel efficient heterogeneous catalyst for the epoxidation of olefins via a simple and cost-effective process is provided, and this experiment demonstrates the notable application prospects of the covalent organic skeleton as a catalyst support.
机译:共价有机骨架(COFs)作为一种可取的多孔有机聚合物而出现,在催化应用中引起了极大的关注。在这项工作中,我们通过使用反应釜代替传统的密封耐热玻璃管制备了具有成本效益的基于亚胺的COF(COF-300,COF-LZU1和CIN-1)。然后,通过浸渍将磷钼酸(PMA)和铁离子固定在COF载体上。生成的框架表示为Fe / PMA @ COF(Fe / PMA @ COF-LZU1,Fe / PMA @ CIN-1和Fe / PMA @ COF-300)。一系列表征结果表明,PMA和铁离子均匀地分散在COF的表面/腔体上。以H _(2)O _(2)为氧化剂,在环辛烯的环氧化反应中研究了所得Fe / PMA @ COFs的催化性能。实验结果表明,Fe / PMA @ CIN-1复合材料可作为环辛烯环氧化的高效多相催化剂。 COF和双位点(PMA和Fe离子)之间的分子内电荷转移,COF的空间结构和氮含量在分散和稳定活性物质中起着至关重要的作用,这与活性物质的活性和稳定性密切相关。催化剂。提供了一种通过简单且经济高效的方法进行烯烃环氧化的新型高效多相催化剂,该实验证明了共价有机骨架作为催化剂载体的显着应用前景。

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