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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The structure of a one-electron oxidized Mn(III)-bis(phenolate) dipyrrin radical complex and oxidation catalysis control via ligand-centered redox activity
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The structure of a one-electron oxidized Mn(III)-bis(phenolate) dipyrrin radical complex and oxidation catalysis control via ligand-centered redox activity

机译:单电子氧化的Mn(III)-双(酚盐)二吡啶基自由基络合物的结构和通过配体为中心的氧化还原活性控制氧化催化

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The tetradentate ligand dppH(3), which features a half-porphyrin and two electron-rich phenol moieties, was prepared and chelated to manganese. The mononuclear Mn(III)-dipyrrophenolate complex 1 was structurally characterized. The metal ion lies in a square pyramidal environment, the apical position being occupied by a methanol molecule. Complex 1 displays two reversible oxidation waves at 0.00 V and 0.47 V vs. Fc(+)/Fc, which are assigned to ligand-centered processes. The one-electron oxidized species 1(+) SbF6- was crystallized, showing an octahedral Mn(III) center with two water molecules coordinated at both apical positions. The bond distance analysis and DFT calculations disclose that the radical is delocalized over the whole aromatic framework. Complex 1(+) SbF6- exhibits an S-tot = 3/2 spin state due to the antiferromagnetic coupling between Mn(III) and the ligand radical. The zero field splitting parameters are D = 1.6 cm(-1), E/D = 0.18(1), g(perpendicular to) = 1.99 and g(parallel to) = 1.98. The dication 1(2+) is an integer spin system, which is assigned to a doubly oxidized ligand coordinated to a Mn(III) metal center. Both 1 and 1(+) SbF6- catalyze styrene oxidation in the presence of PhIO, but the nature of the main reaction product is different. Styrene oxide is the main reaction product when using 1, but phenylacetaldehyde is formed predominantly when using 1(+) SbF6-. We examined the ability of complex 1(+) SbF6- to catalyze the isomerization of styrene oxide and found that it is an efficient catalyst for the anti-Markovnikov opening of styrene oxide. The formation of phenylacetaldehyde from styrene therefore proceeds in a tandem E-I (epoxidation-isomerization) mechanism in the case of 1(+) SbF6-. This is the first evidence of control of the reactivity for styrene oxidation by changing the oxidation state of a catalyst based on a redox-active ligand.
机译:制备了具有半卟啉和两个富电子酚部分的四齿配体dppH(3),并与锰螯合。 Mn(III)-二焦酚酸酯单核复合物1的结构特征。金属离子处于方形锥体环境中,其顶端位置被甲醇分子占据。配合物1在相对于Fc(+)/ Fc的0.00 V和0.47 V处显示两个可逆的氧化波,它们被分配给以配体为中心的过程。单电子氧化的物种1(+)SbF6-结晶,显示八面体Mn(III)中心,两个水分子在两个顶端位置配位。键距分析和DFT计算表明,自由基在整个芳族骨架上均离域。配合物1(+)SbF6-由于Mn(III)与配体基团之间的反铁磁耦合而呈现S-tot = 3/2自旋态。零场分裂参数为D = 1.6 cm(-1),E / D = 0.18(1),g(垂直于)= 1.99和g(平行于)= 1.98。指示1(2+)是一个整数自旋系统,分配给与Mn(III)金属中心配位的双氧化配体。 1和1(+)SbF6-均在PhIO存在下催化苯乙烯氧化,但主要反应产物的性质不同。使用1时,苯乙烯氧化物是主要反应产物,但是使用1(+)SbF6-时主要形成苯乙醛。我们检查了配合物1(+)SbF6-催化氧化苯乙烯的异构化的能力,发现它是抗氧化马尔科夫尼科夫开口的有效催化剂。因此,在1(+)SbF6-的情况下,由苯乙烯形成苯乙醛的过程以串联E-I(环氧化-异构化)机理进行。这是通过改变基于氧化还原活性配体的催化剂的氧化态来控制苯乙烯氧化反应性的第一个证据。

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