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双齿氮氧化物配体的稀土金属配合物:合成与电化学

Rare Earth Metal Complexes of Bidentate Nitroxide Ligands: Synthesis and Electrochemistry.

作者信息

Kim Jee Eon, Bogart Justin A, Carroll Patrick J, Schelter Eric J

机构信息

P. Roy and Diana T. Vagelos Laboratories, Department of Chemistry, University of Pennsylvania , 231 South 34th Street, Philadelphia, Pennsylvania 19104, United States.

出版信息

Inorg Chem. 2016 Jan 19;55(2):775-84. doi: 10.1021/acs.inorgchem.5b02236. Epub 2015 Dec 21.

Abstract

We report rare earth metal complexes with tri- and bidentate ligands including strongly electron-donating nitroxide groups. The tridentate ligand 1,3,5-tris(2'-tert-butylhydroxylaminoaryl)benzene (H3arene-triNOx) was complexed to cerium(IV) in a 2:1 ligand-to-metal stoichiometry as Ce(Harene-triNOx)2 (1). Cyclic voltammetry of this compound showed stabilization of the tetravalent cerium cation with a Ce(IV/III) couple at E1/2 = -1.82 V versus Fc/Fc(+). On the basis of the uninvolvement of the third nitroxide group in the coordination chemistry with the cerium(IV) cation, the ligand system was redesigned toward a simpler bidentate mode, and a series of rare earth metal-arene-diNOx complexes were prepared with La(III), Ce(IV), Pr(III), Tb(III), and Y(III), RE(arene-diNOx)2 (2-RE, RE = La, Pr, Y, Tb) and Ce(IV)(arene-diNOx)2, where H2arene-diNOx = 1,3-bis(2'-tert-butylhydroxylaminoaryl)benzene. The core structures were isostructural throughout the series, with three nitroxide groups in η(2) binding modes and one κ(1) nitroxide group coordinated to the metal center in the solid state. In all cases except Ce(IV)(arene-diNOx)2, electrochemical analysis described two subsequent, ligand-based, quasi-reversible redox waves, indicating that a stable [N-O•] group was generated on the electrochemical time scale. Chemical oxidation of the terbium complex was performed, and isolation of the resulting complex, Tb(arene-diNOx)2·CH2Cl2 (3·CH2Cl2), confirmed the assignment of the cyclic voltammograms. Magnetic data showed no evidence of mixing between the Tb(III) states and the states of the open-shell ligand.

摘要

我们报道了含有三齿和双齿配体(包括强给电子型氮氧化物基团)的稀土金属配合物。三齿配体1,3,5-三(2'-叔丁基羟氨基芳基)苯(H3arene-triNOx)以2:1的配体与金属化学计量比与铈(IV)络合,形成Ce(Harene-triNOx)2(1)。该化合物的循环伏安法显示四价铈阳离子得以稳定,其Ce(IV/III)电对相对于Fc/Fc(+)的E1/2 = -1.82 V。基于第三个氮氧化物基团未参与与铈(IV)阳离子的配位化学,将配体体系重新设计为更简单的双齿模式,并制备了一系列含有镧(III)、铈(IV)、镨(III)、铽(III)和钇(III)的稀土金属-芳烃-diNOx配合物,RE(arene-diNOx)22-RE,RE = La、Pr、Y、Tb)和Ce(IV)(arene-diNOx)2,其中H2arene-diNOx = 1,3-双(2'-叔丁基羟氨基芳基)苯。整个系列的核心结构是同构的,在固态中三个氮氧化物基团以η(2)键合模式存在,一个κ(1)氮氧化物基团与金属中心配位。除Ce(IV)(arene-diNOx)2外,在所有情况下,电化学分析都描述了两个连续的、基于配体的准可逆氧化还原波,表明在电化学时间尺度上生成了稳定的[N-O•]基团。对铽配合物进行了化学氧化,并分离得到了所得配合物Tb(arene-diNOx)2·CH2Cl2(3·CH2Cl2),证实了循环伏安图的归属。磁性数据表明没有证据显示Tb(III)态与开壳层配体的态之间存在混合。

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