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Novel Synthesis of Cu‐Schiff Base Complex@Metal‐Organic Framework MIL‐101 via a Mild Method: A Comparative Study for Rapid Catalytic Effects

机译:轻度法新颖合成铜-席夫碱复合物@金属有机骨架MIL-101:快速催化作用的比较研究

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摘要

The use of metal complex immobilized/decorated porous materials as catalysts has found various applications. As such, finding a new and mild method for synthesis of metal complex immobilized over porous material is of great interest. Immobilized porous materials for styrene oxidation were reported in this work. Immobilized porous material of Cu‐Schiff base complex @MIL‐101 were described, in which immobilized Cu‐Schiff base complex within super cage of a metal‐organic framework (MOF)‐based porous material, chromium (III) terephthalate MIL‐101. They were systematically characterized by using elemental analysis, powder X‐ray diffraction, fourier transform infrared spectroscopy, N2 absorption‐desorption, and so on, also used as catalyst for the selective oxidation of styrene to benzaldehyde. Comparatively, the immobilized heterogeneous catalyst of Cu‐Schiff base complex@MIL‐101 acted as an efficient heterostructure catalyst in the oxidation of styrene to benzaldehyde up to six cycles, and showed superior activity for styrene oxidation over MIL‐101.
机译:已经发现使用金属配合物固定/修饰的多孔材料作为催化剂的各种应用。因此,寻找一种新颖且温和的合成固定在多孔材料上的金属络合物的方法引起了人们的极大兴趣。这项工作报道了用于苯乙烯氧化的固定多孔材料。描述了固定化的Cu-Schiff碱复合物@ MIL-101的多孔材料,其中固定化的Cu-Schiff碱复合物在基于金属有机骨架(MOF)的多孔材料超级对苯二甲酸铬(III)对苯二甲酸酯MIL-101中。通过元素分析,粉末X射线衍射,傅立叶变换红外光谱,N2吸收-解吸等系统地对它们进行了表征,它们还用作将苯乙烯选择性氧化为苯甲醛的催化剂。相比之下,固定化的Cu-Schiff碱络合物@ MIL-101的非均相催化剂在将苯乙烯氧化为苯甲醛的过程中最多可进行6个循环,是一种高效的异质结构催化剂,并且比MIL-101具有更好的苯乙烯氧化活性。

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