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具有M(III)2(μ-O)2核心结构的准三配位铁和钴三苯氧化物配合物{Ar(iPr8)OM(μ-O)}2(Ar(iPr8)=C6H-2,6-(C6H2-2,4,6-(i)Pr3)2-3,5-(i)Pr2;M = Fe或Co)以及与苯氧化相关的2-氧杂环庚三烯过氧化物二聚体。

Quasi-three-coordinate iron and cobalt terphenoxide complexes {Ar(iPr8)OM(μ-O)}2 (Ar(iPr8) = C6H-2,6-(C6H2-2,4,6-(i)Pr3)2-3,5-(i)Pr2; M = Fe or Co) with M(III)2(μ-O)2 core structures and the peroxide dimer of 2-oxepinoxy relevant to benzene oxidation.

作者信息

Zhao Pei, Lei Hao, Ni Chengbao, Guo Jing-Dong, Kamali Saeed, Fettinger James C, Grandjean Fernande, Long Gary J, Nagase Shigeru, Power Philip P

机构信息

Department of Chemistry, University of California , Davis, California 95616, United States.

Fukui Institute for Fundamental Chemistry, Kyoto University , Takano-Nishihiraki-cho, Sakyo-ku, Kyoto 606-8103, Japan.

出版信息

Inorg Chem. 2015 Sep 21;54(18):8914-22. doi: 10.1021/acs.inorgchem.5b00930. Epub 2015 Sep 2.

Abstract

The bis(μ-oxo) dimeric complexes {Ar(iPr8)OM(μ-O)}2 (Ar(iPr8) = C6H-2,6-(C6H2-2,4,6-(i)Pr3)2-3,5-(i)Pr2; M = Fe (1), Co (2)) were prepared by oxidation of the M(I) half-sandwich complexes {Ar(iPr8)M(η(6)-arene)} (arene = benzene or toluene). Iron species 1 was prepared by reacting {Ar(iPr8)Fe(η(6)-benzene)} with N2O or O2, and cobalt species 2 was prepared by reacting {Ar(iPr8)Co(η(6)-toluene)} with O2. Both 1 and 2 were characterized by X-ray crystallography, UV-vis spectroscopy, magnetic measurements, and, in the case of 1, Mössbauer spectroscopy. The solid-state structures of both compounds reveal unique M2(μ-O)2 (M = Fe (1), Co(2)) cores with formally three-coordinate metal ions. The Fe···Fe separation in 1 bears a resemblance to that in the Fe2(μ-O)2 diamond core proposed for the methane monooxygenase intermediate Q. The structural differences between 1 and 2 are reflected in rather differing magnetic behavior. Compound 2 is thermally unstable, and its decomposition at room temperature resulted in the oxidation of the Ar(iPr8) ligand via oxygen insertion and addition to the central aryl ring of the terphenyl ligand to produce the 5,5'-peroxy-bis[4,6-(i)Pr2-3,7-bis(2,4,6-(i)Pr3-phenyl)oxepin-2(5H)-one] (3). The structure of the oxidized terphenyl species is closely related to that of a key intermediate proposed for the oxidation of benzene.

摘要

通过氧化M(I)半夹心配合物{Ar(iPr8)M(η(6)-芳烃)}(芳烃 = 苯或甲苯)制备了双(μ-氧代)二聚配合物{Ar(iPr8)OM(μ-O)}2(Ar(iPr8) = C6H-2,6-(C6H2-2,4,6-(i)Pr3)2-3,5-(i)Pr2;M = Fe (1),Co (2))。铁物种1通过使{Ar(iPr8)Fe(η(6)-苯)}与N2O或O2反应制备,钴物种2通过使{Ar(iPr8)Co(η(6)-甲苯)}与O2反应制备。1和2均通过X射线晶体学、紫外-可见光谱、磁性测量以及对于1而言的穆斯堡尔光谱进行了表征。两种化合物的固态结构均揭示了具有形式上三配位金属离子的独特M2(μ-O)2(M = Fe (1),Co(2))核。1中的Fe···Fe间距与为甲烷单加氧酶中间体Q提出的Fe2(μ-O)2菱形核中的相似。1和2之间的结构差异反映在相当不同的磁性行为中。化合物2热不稳定,其在室温下分解导致Ar(iPr8)配体通过氧插入并加成到三联苯配体的中心芳环上而被氧化,生成5,5'-过氧双[4,6-(i)Pr2-3,7-双(2,4,6-(i)Pr3-苯基)氧杂环庚-2(5H)-酮](3)。氧化的三联苯物种的结构与为苯氧化提出的关键中间体的结构密切相关。

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