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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Binuclear manganese compounds of potential biological significance. Part 2. Mechanistic study of hydrogen peroxide disproportionation by dimanganese complexes: The two oxygen atoms of the peroxide end up in a dioxo intermediate
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Binuclear manganese compounds of potential biological significance. Part 2. Mechanistic study of hydrogen peroxide disproportionation by dimanganese complexes: The two oxygen atoms of the peroxide end up in a dioxo intermediate

机译:双核锰化合物具有潜在的生物学意义。第2部分。锰配合物过氧化氢歧化的机理研究:过氧化物的两个氧原子最终以二氧杂中间体存在

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摘要

The dimanganese(II,II) complexes 1a [Mn-2(L)(OAC)(2)(CH3OH)](ClO4) and 1b [Mn-2(L)(OBz)(2)(H2O)](ClO4), where HL is the unsymmetrical phenol ligand 2-(bis-(2-pyridylmethyl)aminomethyl)-6-((2-pyridylmethyl)(benzyl)aminometh yl)-4-methylphenol, react with hydrogen peroxide in acetonitrile solution. The disproportionation reaction was monitored by electrospray ionization mass spectrometry (ESI-MS) and EPR and UV-visible spectroscopies. Extensive EPR studies have shown that a species (2) exhibiting a 16-line spectrum at g similar to 2 persists during catalysis. ESI-MS experiments conducted similarly during catalysis associate 2a with a peak at 729 (791 for 2b) corresponding to the formula [(MnMnIV)-Mn-III(L)(O)(2)(OAc)](+) ([(MnMnIV)-Mn-III(L)(O)(2)(OBz)](+) for 2b). At the end of the reaction, it is partly replaced by a species (3) possessing a broad unfeatured signal at g similar to 2. ESI-MS associates 3a with a peak at 713 (775 for 3b) corresponding to the formula [(MnMnIII)-Mn-II(L)(O)(OAc)](+) ([(MnMnIII)-Mn-II(L)(O)(OBz)](+) for 3b). In the presence of (H2O)-O-18, these two peaks move to 733 and to 715 indicating the presence of two and one oxo ligands, respectively, When (H2O2)-O-18 is used, 2a and 3a are labeled showing that the oxo ligands come from H2O2. Interestingly, when an equimolar mixture of H2O2 and (H2O2)-O-18 is used, only unlabeled and doubly labeled 2a/b are formed, showing that its two oxo ligands come from the same H2O2 molecule. All these experiments lead to attribute the formula [(MnMnII)-Mn-III(L)(0)2(OAc)]+ to 2a and to 3a the formula [(MnMnIII)-Mn-II(L)(O)(OAc)](+), Freeze-quench/EPR experiments revealed that 2a appears at 500 ms and that another species with a 6-line spectrum is formed transiently at ca. 100 ms. 2a was prepared by reaction of la with tert-butyl hydroperoxide as shown by EPR and UV-visible spectroscopies and ESI-MS experiments. Its structure was studied by X-ray absorption experiments which revealed the presence of two or three O atoms at 1.87 Angstrom and three or two N/O atoms at 2.14 Angstrom. In addition one N atom was found at a longer distance (2.3 Angstrom) and one Mn at 2.63 Angstrom. 2a can be one-electron oxidized at E-1/2 = 0.91 V-NHE (DeltaE(1/2) = 0.08 V) leading to its (MnMnIV)-Mn-IV analogue. The formation of 2a from la was monitored by UV-visible and X-ray absorption spectroscopies. Both concur to show that an intermediate (MnMnII)-Mn-II species, resembling 4a [Mn-2(L)(OAc)(2)(H2O)]-(ClO4)(2), the one-electron-oxidized form of la, is formed initially and transforms into 2a. The structures of the active intermediates 2 and 3 are discussed in light of their spectroscopic properties, and potential mechanisms are considered and discussed in the context of the biological reaction. [References: 66]
机译:二锰(II,II)络合物1a [Mn-2(L)(OAC)(2)(CH3OH)](ClO4)和1b [Mn-2(L)(OBz)(2)(H2O)](ClO4 ),其中HL是不对称的酚配体2-(双-(2-吡啶基甲基)氨基甲基)-6-((2-吡啶基甲基)(苄基)氨基甲基)-4-甲基苯酚,与过氧化氢在乙腈溶液中反应。歧化反应通过电喷雾电离质谱(ESI-MS)以及EPR和紫外可见光谱进行监测。广泛的EPR研究表明,在催化作用下,一种物种(2)在g处与16相似时显示出16谱线光谱。 ESI-MS实验类似地在催化2a期间进行,在729处有一个峰(对于2b为791),对应于式[(MnMnIV)-Mn-III(L)(O)(2)(OAc)](+)([ (b)的(MnMnIV)-Mn-III(L)(O)(2)(OBz)](+))。在反应结束时,它被部分(3)取代,该物种在g处具有类似于2的宽泛未特征信号。ESI-MS将3a与713峰相关联(对于3b为775),与式[[MnMnIII )-Mn-II(L)(O)(OAc)](+)([(MnMnIII)-Mn-II(L)(O)(OBz)](+)3b)。在存在(H2O)-O-18时,这两个峰分别移至733和715,表明存在两个和一个氧代配体。当使用(H2O2)-O-18时,标记2a和3a表示氧代配体来自H2O2。有趣的是,当使用H2O2和(H2O2)-O-18的等摩尔混合物时,仅形成未标记和双标记的2a / b,这表明其两个oxo配体来自同一H2O2分子。所有这些实验导致将公式[(MnMnII)-Mn-III(L)(0)2(OAc)] +归于2a,将公式[(MnMnIII)-Mn-II(L)(O)( Oac)](+),冻结-淬灭/ EPR实验表明,在500 ms处出现2a,并且在大约200 nm处瞬间形成了另一种具有6线光谱的物种。 100毫秒如EPR和UV-可见分光光度法和ESI-MS实验所示,通过1a与氢过氧化叔丁基反应制备了2a。通过X射线吸收实验研究了其结构,该实验揭示了在1.87埃处存在两个或三个O原子,在2.14埃处存在三个或两个N / O原子。另外,在更长的距离(2.3埃)处发现了一个N原子,在2.63埃处发现了一个Mn。 2a可以在E-1 / 2 = 0.91 V-NHE(DeltaE(1/2)= 0.08 V)处被单电子氧化,生成(MnMnIV)-Mn-IV类似物。通过UV-可见和X射线吸收光谱法监测从1a形成的2a。两者都同意表明是一种中间(MnMnII)-Mn-II物质,类似于4a [Mn-2(L)(OAc)(2)(H2O)]-(ClO4)(2),一种单电子氧化形式1a的b最初形成并转换为2a。根据它们的光谱性质讨论了活性中间体2和3的结构,并且在生物反应的背景下考虑和讨论了潜在的机理。 [参考:66]

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