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首页> 外文期刊>Catalysis science & technology >Glycol metalloporphyrin derivatives in solution or immobilized on LDH and silica: synthesis, characterization and catalytic features in oxidation reactions
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Glycol metalloporphyrin derivatives in solution or immobilized on LDH and silica: synthesis, characterization and catalytic features in oxidation reactions

机译:溶液中或固定在LDH和二氧化硅上的乙二醇金属晶蛋白衍生物:氧化反应中的合成,表征和催化特征

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We reacted [meso-tetrakis(pentafluorophenyl)porphyrin] with ethylene glycol to obtain porphyrins substituted with one to four hydroxyalkyloxy groups at position 4 of the meso-aryl groups. We then inserted iron(III) or manganese(III) into the mono- and tetra-substituted free-base derivatives, which afforded the corresponding metalloporphyrin complexes. Next/we immobilized the iron(III) and manganese(III) porphyrins on two supports: layered double hydroxide (LDH) and silica (synthesized by the sol-gel process). We characterized the resulting solids using powder X-ray diffraction (PXRD), UV-vis electronic spectroscopy, and electron paramagnetic resonance (EPR), and we investigated the catalytic activity of the materials in both homogeneous and heterogeneous media. The metalloporphyrins provided good catalytic conversions in (2)-cyclooctene oxidation. As for cyclohexane oxidation, the catalysts were selective for the alcohol instead of the ketone. In the case of heterogeneous catalysis, the immobilized metalloporphyrins furnished slightly lower yields as compared with homogeneous catalysis. However, these solids presented a major advantage: reusability. Indeed, these solid catalysts retained their activity for at least three cycles in the case of (Z)-cyclooctene oxidation.
机译:我们与乙二醇反应[中四氟苯基)卟啉,以获得用中氧化芳基芳烃组的位置4的一到四个羟基羟基氧基取代的卟啉。然后,我们将铁(III)或锰(III)插入单核和四取代的自由碱衍生物中,该衍生物提供了相应的金属核磷脂复合物。 Next/我们在两个支撑上固定了铁(III)和锰(III)卟啉:分层双氢氧化物(LDH)和二氧化硅(由Sol-Gel工艺合成)。我们使用粉末X射线衍射(PXRD),UV-VIS电子光谱和电子顺磁共振(EPR)表征所得的固体,我们研究了均匀和异质介质中材料的催化活性。金属酚烯在(2) - 环辛氧化中提供了良好的催化转化。至于环己烷氧化,催化剂是对酒精而不是酮的选择性。在异质催化的情况下,与均匀催化相比,固定的金属磷脂的产量略低。但是,这些固体具有主要优势:可重复使用。实际上,这些固体催化剂在(z) - 环辛氧化的情况下保留了至少三个循环的活性。

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