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'Ship in a bottle' Porph@MOMs as highly efficient catalysts for selective controllable oxidation and insights into different mechanisms in heterogeneous and homogeneous environments

机译:“在瓶子里船”Porph @ MOMS作为高效的催化剂,用于选择性可控氧化和在异构和均匀环境中的不同机制中的洞察力

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In the present work, three "ship in a bottle" Porph@MOMs are reported as biomimetic oxidation catalysts for different reactions. These frameworks are constructed from trimesic acid and metal ions (M = Fe, Co and Mn) in which tetra(N-methyl-4-pyridyl)porphyrin (MTMPyP) is encapsulated within the cavities. Additionally, the catalytic activities of the corresponding homogeneous compounds, FeTMPyP, CoTMPyP and MnTMPyP, and the frameworks without porphyrins within the cavities were investigated in the foregoing oxidation reactions. The prepared 3D porous structures have the ability to control selectivity toward the desired product. Furthermore, they are capable of acting as effective peroxidase mimics, which successfully catalyze the oxidation of diverse olefins as well as hydrocarbons using TBHP as an oxidant. The heterogeneous catalysts significantly enhance conversion in contrast to their corresponding homogeneous systems. Remarkably, an insight into the catalyst behavior was gained from the proposed mechanism based on the reversal of selectivity. Investigation of the stability and reusability of the catalysts revealed the heterogeneity character of the catalyst with no desorption during the course of oxidation reactions. The high yields, dean reactions, high thermal stability and reusability of the catalysts make them good candidates for heterogeneous catalysts in various oxidation reactions.
机译:在目前的工作中,三个“瓶子中的船”Porph @ MOMS被报告为不同反应的仿生氧化催化剂。这些框架由本发明的酸和金属离子(M = Fe,Co和Mn)构成,其中Tetra(N-甲基-4-吡啶基)卟啉(MTMPYP)包封在腔内。另外,在前述氧化反应中,研究了相应的均匀化合物,FETMPYP,COTMPYP和MNTMPYP和MNTMPYP和MNTMPYP的催化活性,以及​​没有卟啉内的没有卟啉的框架。制备的3D多孔结构具有控制朝向所需产物的选择性的能力。此外,它们能够用作有效的过氧化物酶模拟物,其使用TBHP作为氧化剂成功地催化了各种烯烃以及烃的氧化。与其相应的均匀系统相比,异质催化剂显着提高转化。值得注意的是,基于选择性的逆转,从所提出的机制中获得了对催化剂行为的洞察力。研究催化剂的稳定性和可重用性揭示了催化剂在氧化反应过程中没有解吸的催化剂的异质性特征。催化剂的高产率,院长反应,高热稳定性和可重用性使其在各种氧化反应中的非均相催化剂的良好候选物。

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