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一种新型酚氧基桥联锰配合物[Mn2(mL)2]2+的合成、结构与表征:通往新型单μ-氧代二锰核心单元的化学和电化学途径

Synthesis, structure, and characterisation of a new phenolato-bridged manganese complex [Mn2(mL)2]2+: chemical and electrochemical access to a new mono-mu-oxo dimanganese core unit.

作者信息

Hureau Christelle, Sabater Laurent, Anxolabéhère-Mallart Elodie, Nierlich Martine, Charlot Marie-France, Gonnet Florence, Rivière Eric, Blondin Geneviève

机构信息

Laboratoire de Chimie Inorganique, UMR 8613, LRC-CEA number 33 V, Institut de Chimie Moléculaire et des Matériaux d'Orsay, Université Paris-Sud, 91405 Orsay Cedex, France.

出版信息

Chemistry. 2004 Apr 19;10(8):1998-2010. doi: 10.1002/chem.200305515.

Abstract

The dinuclear phenolato-bridged complex (mL)Mn(II)Mn(II)(mL)(2) (1(ClO(4))(2)) has been obtained with the new [N(4)O] pentadentate ligand mL(-) (mLH=N,N'-bis-(2-pyridylmethyl)-N-(2-hydroxybenzyl)-N'-methyl-ethane-1,2-diamine) and has been characterised by X-ray crystallography. X- and Q-band EPR spectra were recorded and their variation with temperature was examined. All spectra exhibit features extending over 0-800 mT at the X band and over 100-1450 mT at the Q band, features that are usually observed for dinuclear Mn(II) complexes. Cyclic voltammetry of 1 exhibits two irreversible oxidation waves at E(1)(p)=0.89 V and E(2)(p)=1.02 V, accompanied on the reverse scan by an ill-defined cathodic wave at E(1')(p)=0.56 V (all measured versus the saturated calomel electrode (SCE)). Upon chemical oxidation with tBuOOH (10 equiv) at 20 degrees C, 1 is transformed into the mono-mu-oxo species (mL)Mn(III)-(mu-O)-Mn(III)(mL) (2), which eventually partially evolves into the di-mu-oxo species (mL)Mn(III)-(mu-O)(2)-Mn(IV)(mL) (3) in which one of the aromatic rings of the ligand is decoordinated. The UV/Vis spectrum of 2 displays a large absorption band at 507 nm, which is attributed to a phenolate-->Mn(III) charge-transfer transition. The cyclovoltammogram of 2 exhibits two reversible oxidation waves, at 0.65 and 1.16 V versus the SCE, corresponding to the Mn(III)Mn(III)/Mn(III)Mn(IV) and Mn(III)Mn(IV)/Mn(IV)Mn(IV) oxidation processes, respectively. The one-electron electrochemical oxidation of 2 leads to the mono-mu-oxo mixed-valent species (mL)Mn(III)-(mu-O)-Mn(IV)(mL) (2 ox). The UV/Vis spectrum of 2 ox exhibits one large band at 643 nm, which is attributed to the phenolate-->Mn(IV) charge-transfer transition. 2 ox can also be obtained by the direct electrochemical oxidation of 1 in the presence of an external base. The 2 ox and 3 species exhibit a 16-line EPR signal with first peak to last trough widths of 125 and 111 mT, respectively. Both spectra have been simulated by using colinear rhombic Mn-hyperfine tensors. Mechanisms for the chemical formation of 2 and the electrochemical oxidation of 1 into 2 ox are proposed.

摘要

已通过新型[ N(4)O ]五齿配体mL⁻(mLH = N,N'-双-(2-吡啶甲基)-N-(2-羟基苄基)-N'-甲基-乙烷-1,2-二胺)制得双核酚氧基桥联配合物(mL)Mn(II)Mn(II)(mL)₂(1(ClO₄)₂),并通过X射线晶体学对其进行了表征。记录了X波段和Q波段的电子顺磁共振(EPR)谱,并研究了其随温度的变化。所有谱在X波段均显示出在0 - 800 mT范围内的特征,在Q波段则显示出在100 - 1450 mT范围内的特征,这些特征通常在双核Mn(II)配合物中观察到。1的循环伏安图在E₁(p)=0.89 V和E₂(p)=1.02 V处显示出两个不可逆氧化波,在反向扫描时,在E₁'(p)=0.56 V处伴有一个不明确的阴极波(所有测量均相对于饱和甘汞电极(SCE))。在20℃下用叔丁基过氧化氢(10当量)进行化学氧化时,1转化为单μ-氧物种[(mL)Mn(III)-(μ-O)-Mn(III)(mL)]²⁺(2),其最终部分演变为双μ-氧物种[(mL)Mn(III)-(μ-O)₂-Mn(IV)(mL)]ⁿ⁺(3),其中配体的一个芳环发生了去配位。2的紫外/可见光谱在507 nm处显示出一个大吸收带,这归因于酚盐→Mn(III)电荷转移跃迁。2的循环伏安图显示出两个可逆氧化波,相对于SCE分别在0.65和1.16 V处,分别对应于Mn(III)Mn(III)/Mn(III)Mn(IV)和Mn(III)Mn(IV)/Mn(IV)Mn(IV)氧化过程。2的单电子电化学氧化导致单μ-氧混合价物种[(mL)Mn(III)-(μ-O)-Mn(IV)(mL)]³⁺(2 ox)。2 ox的紫外/可见光谱在643 nm处显示出一个大吸收带,这归因于酚盐→Mn(IV)电荷转移跃迁。2 ox也可通过在外部碱存在下对1进行直接电化学氧化得到。2 ox和3物种显示出16线EPR信号,第一个峰到最后一个谷的宽度分别为125和111 mT。两种光谱均使用共线菱形Mn超精细张量进行了模拟。提出了2的化学形成以及1电化学氧化为2 ox的机理。

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