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Fe-amino acid complexes immobilized on silica gel as active and highly selective catalysts in cyclohexene epoxidation

机译:固定在硅胶上的铁氨基酸配合物,作为环己烯环氧化中的活性和高选择性催化剂

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摘要

In this work, the syntheses, structure, superoxide dismutase (SOD) activity, and the catalytic use in the oxidative transformations of cyclohexene of covalently grafted Fe(III)-complexes formed with various or various combinations of C-protected amino acid (l-histidine, l-tyrosine, l-cysteine and l-cystine) ligands are presented. The structural features of the surface complexes were studied by XANES/EXAFS and mid/far-IR spectroscopies. The compositions of the complexes were determined by ICP-MS and the Kjeldahl method. The SOD activities of the materials were evaluated in a biochemical test reaction. The obtained materials were used as catalysts for the oxidation of cyclohexene with peracetic acid in acetone. Both covalent grafting and building the complex onto the surface of the chloropropylated silica gel were successful in most cases. In many instances, the obtained structures and the coordinating groups were found to substantially vary upon changing the conditions of the syntheses. All the covalently immobilized Fe(III)-complexes displayed SOD activities, and most of them were found to be capable of catalyzing the oxidation of cyclohexene with appreciably high activities and outstanding epoxide selectivities.
机译:在这项工作中,合成,结构,超氧化物歧化酶(SOD)的活性,以及​​环己烯的氧化转化中的催化用途,这些环己烯是由C保护的氨基酸(l-给出了组氨酸,L-酪氨酸,L-半胱氨酸和L-胱氨酸的配体。通过XANES / EXAFS和中/远红外光谱学研究了表面复合物的结构特征。通过ICP-MS和凯氏定氮法测定配合物的组成。在生化测试反应中评估了材料的SOD活性。所获得的材料用作在丙酮中用过乙酸氧化环己烯的催化剂。在大多数情况下,共价接枝和将络合物构建在氯丙基化硅胶表面上都是成功的。在许多情况下,发现在改变合成条件时,所获得的结构和配位基团基本上发生变化。所有共价固定的Fe(III)配合物均具有SOD活性,并且发现其中大多数能够催化环己烯的氧化,并具有很高的活性和出色的环氧选择性。

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