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首页> 外文期刊>Applied Organometallic Chemistry >Axial base-controlled catalytic activity, oxidative stability and product selectivity of water-insoluble manganese and iron porphyrins for oxidation of styrenes in water under green conditions
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Axial base-controlled catalytic activity, oxidative stability and product selectivity of water-insoluble manganese and iron porphyrins for oxidation of styrenes in water under green conditions

机译:轴向基础控制的催化活性,水不溶性锰和铁卟啉的氧化稳定性和产品选择性,用于在绿色条件下水中的苯乙烯氧化

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摘要

A series of water-insoluble iron(III) and manganese(III) porphyrins, FeT(2-CH3)PPCl, FeT(4-OCH3)PPCl, FeT(2-Cl)PPCl, FeTPPCl, MnT(2-CH3)PPOAc, MnT(4-OCH3)PPOAc, MnT(2-Cl)PPOAc and MnTPPOAc, in the presence of imidazole (ImH), F-, Cl-, Br- and acetate were used as catalysts for the aqueous-phase heterogeneous oxidation of styrenes to the corresponding epoxides and aldehydes with sodium periodate. Also, the effect of various reaction parameters such as reaction time, molar ratio of catalyst to axial base, type of axial base, molar ratio of olefin to oxidant and nature of metal centre on the activity and oxidative stability of the catalysts and the product selectivity was investigated. Higher catalytic activities were found for the iron complexes. Interestingly, the selectivity towards the formation of epoxide and aldehyde (or acetophenone) was significantly influenced by the type of axial base. Furthermore, Br- and ImH were found to be the most efficient co-catalysts for the oxidation of olefins performed in the presence of the manganese and iron porphyrins, respectively. The optimized molar ratio of catalyst to axial base was different for various axial bases. Also, the order of co-catalyst activity of the axial bases obtained in aqueous medium was different from that reported for organic solvents. The use of a convenient axial base under optimum reaction catalyst to co-catalyst molar ratio in the presence of the manganese porphyrin gave the oxidative products with a conversion of ca 100% in a reaction time of less than 3h. However, the catalytic activity of the iron porphyrins could not be effectively improved by increasing the catalyst to co-catalyst molar ratio.
机译:一系列水不溶性铁(III)和锰(III)卟啉,FET(2-CH3)PPCL,FET(4-OCH3)PPCL,FET(2-CL)PPCL,FETPPCL,MNT(2-CH3)PPOAc ,MnT(4-OCH3)PPOAC,MNT(2-CL)PPOAc和MNTPPOAc在咪唑(IMH),F-,Cl-,Br-和乙酸盐存在下用作水相异质氧化的催化剂苯乙烯与钠碘酸钠相应的环氧化物和醛。此外,各种反应参数如反应时间,催化剂的摩尔比为轴向基础,轴向型,烯烃摩尔比和金属中心的催化剂氧化稳定性的氧化剂和性质以及产品选择性调查了。为铁络合物发现了更高的催化活性。有趣的是,对形成环氧化物和醛(或乙酮)的选择性受到轴向碱型的显着影响。此外,发现BR-和IMH分别是在锰和铁卟啉存在下进行的烯烃氧化的最有效的助催化剂。对于各种轴向碱,催化剂与轴向底座的优化摩尔比不同。而且,在含水介质中获得的轴向碱的助催化剂活性的顺序不同于有机溶剂的报道。在锰卟啉存在下在最佳反应催化剂下在最佳反应催化剂中使用方便的轴向碱基在锰卟啉存在下,在少于3h的反应时间的反应时间中将氧化产物提供Ca 100%。然而,通过增加催化剂以助催化剂摩尔比不能有效地改善铁卟啉的催化活性。

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