首页> 外文期刊>Journal of the American Chemical Society >ACYLPEROXO-IRON(III) PORPHYRIN COMPLEXES - A NEW ENTRY OF POTENT OXIDANTS FOR THE ALKENE EPOXIDATION
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ACYLPEROXO-IRON(III) PORPHYRIN COMPLEXES - A NEW ENTRY OF POTENT OXIDANTS FOR THE ALKENE EPOXIDATION

机译:酰基过氧-铁(III)卟啉配合物-烯烃环氧化的强氧化剂的新输入

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Competitive epoxidation of norbornylene and alpha-methylstyrene by peracids in the presence of iron porphyrins has been carried out in methylene chloride and toluene at -78 degrees C. When (TMP)Fe-III(RCO(2)) (TMP = 5,10,15,20-tetramesitylporphyrin) is used as a catalyst in methylene chloride, selectivity of norbornylene oxide over alpha-methylstyrene oxide is almost identical even though a variety of peracids are used, since O=Fe(IV)TMP pi-cation radical 2a is the common oxidant in the reactions. On the other hand, the selectivity in the epoxidations catalyzed by (TDCPP)Fe-III(X) (TDCPP: 5,10,15,20-tetrakis(2,6-dichlorophenyl)porphyrin is found to be dependent on the structure of peracids. The latter type of the results is also obtained for the reactions catalyzed both by (TMP)Fe-III(X) and by (TDCPP)Fe-III(X) in toluene. The dependence of the selectivity in the epoxidation on the structure of peracids is attributed to the alteration of the oxidant from 2 to peracid-Fe(III) complexes 1. The direct involvement of 1 in the epoxidation has been further confirmed by spectroscopic studies of the reactions. Under the catalytic epoxidation conditions at low temperature, the participation of 1 and 2 as the active species is controlled either by electronic structure of iron porphyrin complexes (push-pull effect) or by alteration of the solvent. [References: 81]
机译:在卟啉铁存在下,过酸在--78摄氏度下在二氯甲烷和甲苯中进行了降冰片烯和α-甲基苯乙烯的竞争性环氧化。当(TMP)Fe-III(RCO(2))(TMP = 5,10 (15,20-四甲苯基卟啉)在二氯甲烷中用作催化剂,由于使用了O = Fe(IV)TMPπ-阳离子基团2a,即使使用了多种过酸,降冰片烯氧化物对α-甲基苯乙烯氧化物的选择性几乎相同。是反应中的常见氧化剂。另一方面,发现由(TDCPP)Fe-III(X)(TDCPP:5,10,15,20-四(2,6-二氯苯基)卟啉)催化的环氧化选择性取决于对于在甲苯中的(TMP)Fe-III(X)和(TDCPP)Fe-III(X)催化的反应,也获得了后者的结果。过酸的结构归因于氧化剂从2变为过酸-Fe(III)配合物1.反应的光谱学研究进一步证实了1直接参与环氧化反应在低温催化环氧化条件下,通过铁卟啉配合物的电子结构(推挽效应)或通过改变溶剂控制1和2作为活性物质的参与[参考文献:81]

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