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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Salen-Co(II) complex incorporated into amino-functionalized MIL-101(Cr) through postsynthetic modification as a cooperative catalyst for cyclohexane selective oxidation
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Salen-Co(II) complex incorporated into amino-functionalized MIL-101(Cr) through postsynthetic modification as a cooperative catalyst for cyclohexane selective oxidation

机译:通过合成后并入氨基官能化MIL-101(Cr)的Salen-Co(II)配合物作为环己烷选择性氧化的协同催化剂

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摘要

A series of MOF-based catalysts, metal-salen complexes incorporated into amino-functionalized MIL-101 matrices by salicylaldehyde condensing to amino group and coordinating metal ion through one pot method, have been prepared and characterized. The successful preparation of catalysts demonstrates that postsynthetic modification (PSM) is a practical and powerful route to generate MOF-based catalyst with multiple active sites. The catalytic performances of prepared catalysts were investigated via selective oxidation of cyclohexane to cydohexanone and cyclohexanol (KA-oil) by molecular oxygen in the absence of solvent. It was found that NH2-MIL-101(Cr)-Sal-Co, as a typical case, behaves as cooperative catalyst for cyclohexane selective oxidation. That is, salen-Co(II) attached to framework of MOF is able to assist in the generation of new radicals from peroxides via a Haber-Weiss catalytic cycle to promote conversion of cyclohexane while framework Cr ion is able to catalyze the dehydration of intermediate product cyclohexyl hydroperoxide (CHHP) to improve KA-oil selectivity. Furthermore, this catalyst exhibits good recyclability and behaves as truely heterogeneous catalyst.
机译:制备并表征了一系列基于MOF的催化剂,即通过水杨醛缩合成氨基并通过一锅法配位金属离子而结合到氨基官能化MIL-101基质中的金属salen配合物。催化剂的成功制备表明,合成后修饰(PSM)是产生具有多个活性位点的基于MOF的催化剂的实用而有效的途径。在不存在溶剂的情况下,通过分子氧将环己烷选择性氧化为环己酮和环己醇(KA油),研究了所制备催化剂的催化性能。发现典型的情况是NH2-MIL-101(Cr)-Sal-Co作为环己烷选择性氧化的协同催化剂。也就是说,连接到MOF骨架上的salen-Co(II)能够通过Haber-Weiss催化循环帮助过氧化物生成新的自由基,从而促进环己烷的转化,而骨架Cr离子则能够催化中间体的脱水产物环己基氢过氧化物(CHHP)以提高KA油的选择性。此外,该催化剂表现出良好的可再循环性,并且表现为真正的多相催化剂。

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