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首页> 外文期刊>Journal of Organometallic Chemistry >Synthetic, structural, spectroscopic, and electrochemical studies of mixed sandwich Rh(III) and Ir(III) complexes involving Cp* and tridentate macrocycles
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Synthetic, structural, spectroscopic, and electrochemical studies of mixed sandwich Rh(III) and Ir(III) complexes involving Cp* and tridentate macrocycles

机译:涉及Cp *和三齿大环的混合夹心Rh(III)和Ir(III)混合复合物的合成,结构,光谱和电化学研究

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摘要

The syntheses, structures, spectroscopy, and electrochemistry for six Ir(III) and Rh(III) mixed sandwich mononuclear complexes involving tridentate macrocycles and pentamethylcyclopentadienide (Cp*) are reported. The complexes are readily prepared by direct ligand substitution reactions from the dichloro bridged binuclear complexes, [{M(Cp*)(Cl)(2)}(2)]. All complexes have the general formula [M(L)(Cp*)]X-2 (M = Ir(III) or Rh(III), L = macrocycle, X = PF6- or Cl-) and exhibit a distorted octahedral structure involving three donor atoms from the macrocycle and the facially coordinating carbocyclic Cp* ligand. The complex cations include: [Rh(eta(5) -Cp*)(9S3)](2+) (1), [Rh(eta(5)-Cp*)(9N3)](2+) (2), [Rh(eta(5)-Cp*)(10S3)](2+) (3), [Ir(eta(5)-Cp*)(9S3)](2+) (4), [Ir(eta(5)-Cp*)(9N3)](2+) (5), and [Ir(eta(5)-Cp*)(10S3)](2+) (6), where 9S3 = 1,4,7-trithiacyclononane, 9N3 = 1,4,7-triazacyclononane, and 10S3 = 1,4,7-trithiacyclodecane. The structures for all six complexes are supported by H-1 and C-13{H-1} NMR spectroscopy, and five complexes are also characterized by single-crystal X-ray crystallography (complexes 1-5). The H-1 NMR splittings between the two sets of methylene protons for both the Rh(III) and Ir(III) 9S3 complexes are much larger (0.4 vs. 0.2 ppm) compared to those in the two 9N3 complexes. Similarly, the C-13{H-1} NMR spectra in all four thioether complexes show that the ring carbons in the Cp* ligand are shifted by over 10 ppm downfield compared to the azacrown complexes. The electrochemistry of the complexes is surprisingly invariable and is dominated by a single irreversible metal-centered reduction near -1.2 V vs. Fc/Fc(+). (C) 2004 Elsevier B.V. All rights reserved.
机译:报道了涉及三齿大环和五甲基环戊二烯(Cp *)的六个Ir(III)和Rh(III)混合夹心单核配合物的合成,结构,光谱和电化学。通过直接的配体取代反应,由二氯桥联的双核配合物[{M(Cp *)(Cl)(2)}(2)制备配合物。所有配合物的通式为[M(L)(Cp *)] X-2(M = Ir(III)或Rh(III),L =大环,X = PF6-或Cl-),并显示扭曲的八面体结构涉及大环中的三个供体原子和面部配位碳环Cp *配体。复杂阳离子包括:[Rh(eta(5)-Cp *)(9S3)](2+)(1),[Rh(eta(5)-Cp *)(9N3)](2+)(2) ,[Rh(eta(5)-Cp *)(10S3)](2+)(3),[Ir(eta(5)-Cp *)(9S3)](2+)(4),[Ir( eta(5)-Cp *)(9N3)](2+)(5)和[Ir(eta(5)-Cp *)(10S3)](2+)(6),其中9S3 = 1,4 ,7-三硫代环壬烷,9N3 = 1,4,7-三氮杂环壬烷和10S3 = 1,4,7-三硫代环癸烷。所有六个配合物的结构均由H-1和C-13 {H-1} NMR光谱支持,五个配合物的特征还在于单晶X射线晶体学(配合物1-5)。与两个9N3络合物相比,Rh(III)和Ir(III)9S3络合物在两组亚甲基质子之间的H-1 NMR拆分要大得多(0.4对0.2 ppm)。同样,在所有四个硫醚配合物中的C-13 {H-1} NMR光谱显示,与氮杂冠配合物相比,Cp *配体中的环碳向低处偏移超过10 ppm。配合物的电化学令人惊奇地不变,并且以相对于Fc / Fc(+)的-1.2 V附近的单个不可逆金属中心还原为主导。 (C)2004 Elsevier B.V.保留所有权利。

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