Epoxidation and catechol oxidation catalytic processes promoted by manganese(III) complexes of salen-type ligands

IF 0.4 4区 化学 Q4 Chemistry
Averi Guha, E. Zangrando, A. Chandra
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引用次数: 0

Abstract

Four new mononuclear manganese(III) complexes namely 1, 2, 3 and 4 of salen-type ligands H2L 1-H2L 4 (ligands were obtained in situ via Schiff-base condensation of 2-formyl-6-hydroxymethyl-4-methylphenol and amines cyclohexane-1,2diamine, 2-methylpropane-1,2-diamine, propane-1,2-diamine and ethane-1,2-diamine, respectively) have been synthesised and characterised by routine physicochemical techniques. 1 is further characterised by X-ray single crystal structure analysis. Catalytic efficiencies of the complexes as epoxidation catalysts (substrates: styrene and (E)-stilbene; terminal oxidants: PhIO/NaOCl; solvent: MeCN /dicholorometane) and as catalysts for oxidation of catachol (substrates: 3,5-di-tertbutylcatechol (3,5-DTBC); solvent: methanol) have been evaluated. In both cases the catalytic efficiency increases on going from 4-1 although the actual mechanisms in those two catalytic reactions are completely different. However, the observations have been rationalized on the basis of steric and electronic factors exerted by the alkyl substituents present on the imine back-bone of the salen-type ligands. This study also verifies that there is at least another active epoxidizing species, [Cl–O–Mn(III)(salen)X] in addition to the discrete Mn(V)=O(salen) species in epoxidation of olefins depending upon the terminal oxidants employed.
salen型配体锰(III)配合物促进环氧化和儿茶酚氧化的催化过程
本文合成了四种新的单核锰(III)配合物,即salan型配体h2l1 - h2l4的1、2、3和4(配体分别由2-甲酰基-6-羟甲基-4-甲基苯酚和胺类化合物环己烷-1,2二胺、2-甲基丙烷-1,2二胺、丙烷-1,2二胺和乙烷-1,2二胺原位希夫碱缩合得到),并通过常规物理化学技术对其进行了表征。通过x射线单晶结构分析进一步表征。配合物作为环氧化催化剂的催化效率(底物:苯乙烯和(E)-苯乙烯);末端氧化剂:PhIO/NaOCl;溶剂:MeCN /二氯甲烷)和作为邻苯二酚氧化的催化剂(底物:3,5-二叔丁基邻苯二酚(3,5- dtbc);溶剂:甲醇)已被评价。在这两种情况下,催化效率都是从4-1开始增加的,尽管这两种催化反应的实际机制完全不同。然而,基于存在于萨伦型配体亚胺骨架上的烷基取代基所施加的空间和电子因素,这些观察结果得到了合理的解释。本研究还证实,在烯烃的环氧化反应中,除了离散的Mn(V)=O(salen)外,至少还有另一种活性的环氧化物质[Cl-O-Mn (III)(salen)X],这取决于所使用的末端氧化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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1
审稿时长
6-12 weeks
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