首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >METALLOPORPHYRIN PEROXO COMPLEXES OF IRON(III), MANGANESE(III), AND TITANIUM(IV) - COMPARATIVE STUDIES DEMONSTRATING THAT THE IRON(III) COMPLEX IS EXTREMELY NUCLEOPHILIC
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METALLOPORPHYRIN PEROXO COMPLEXES OF IRON(III), MANGANESE(III), AND TITANIUM(IV) - COMPARATIVE STUDIES DEMONSTRATING THAT THE IRON(III) COMPLEX IS EXTREMELY NUCLEOPHILIC

机译:铁(III),锰(III)和钛(IV)的金属卟啉过氧化物配合物-对比研究表明铁(III)配合物是极亲核的

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Peroxo Fe(III), Mn(III), and Ti(IV) porphyrin complexes were reacted with a variety of electron-rich and electron-poor organic substrates in order to compare their reactivities with those of other known metalloperoxide complexes. The peroxoiron(III) porphyrin complex was unreactive with electron-rich substrates such as tetramethylethylene, cyclohexene, triphenylphosphine, or butyllithium but was quite reactive with electron-poor substrates such as 2-cyclohexen-1-one and 2-methyl-1,4-naphthoquinone. The peroxomanganese(III) porphyrin complex was unreactive with these electron-poor olefins but did react with the strongly electron-deficient olefin tetracyanoethylene. The peroxotitanium(IV) porphyrin complex was unreactive with both electron-rich and electron-poor olefins, as well as butyllithium, but did quantitatively oxidize triphenylphosphine to triphenylphosphine oxide. These results lead to the conclusion that the peroxo Fe(III) porphyrin complex is significantly more nucleophilic than the analogous Mn(III) and Ti(IV) complexes and than several well-known nucleophilic non-porphyrin peroxometal complexes. [References: 54]
机译:使Peroxo Fe(III),Mn(III)和Ti(IV)卟啉配合物与各种富电子和贫电子的有机底物反应,以便将其与其他已知的金属过氧化物配合物的反应性进行比较。过氧铁(III)卟啉配合物与富电子底物(如四甲基乙烯,环己烯,三苯基膦或丁基锂)不反应,但与贫电子底物(如2-cyclohexen-1-one和2-methyl-1,4)有很好的反应性-萘醌。过氧锰(III)卟啉配合物与这些电子贫乏的烯烃不发生反应,但与强电子缺乏的烯烃四氰基乙烯发生了反应。过氧钛(IV)卟啉配合物与富电子和贫电子的烯烃以及丁基锂均不反应,但定量地将三苯膦氧化为三苯膦氧化物。这些结果得出这样的结论,即过氧铁(III)卟啉配合物比类似的Mn(III)和Ti(IV)配合物以及比几种众所周知的亲核非卟啉过氧金属配合物更亲核。 [参考:54]

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