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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Free radical production by hydroxy-salen manganese complexes studied by ESR and XANES
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Free radical production by hydroxy-salen manganese complexes studied by ESR and XANES

机译:ESR和XANES研究了羟基沙仑锰配合物的自由基产生

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摘要

Three salen-Mn-II complexes bearing hydroxyl groups in either the ortho, para or meta positions have been synthesized and the structures of the metal complexes and their potential to produce free radicals investigated by electron spin resonance (ESR) and X-ray absorption near edge structures (XANES) spectroscopy. All three compounds were shown to generate a high level of superoxide anions in dimethyl sulfoxide (DMSO) solution. The production of oxygen radicals results from a one electron process oxidation of Mn-II species leading to the formation Mn-III redox state species, as revealed by a higher XANES edge energy of 2.7 eV. The formation of superoxide anion was characterized by ESR, both directly and via the use of a spin-trapping method. Under reductive condition in the presence of ascorbic acid, the reduction of Mn-III to Mn-II leads to the production of hydroxyl radicals by the ortho and para compounds. The efficient production O-2(.-) by such salen-Mn complexes could be useful to evaluate the scavenging properties of antioxidant molecules.
机译:合成了三种在邻位,对位或间位带有羟基的Salen-Mn-II配合物,并通过电子自旋共振(ESR)和X射线吸收研究了金属配合物的结构及其产生自由基的潜力边缘结构(XANES)光谱。三种化合物均在二甲亚砜(DMSO)溶液中产生高水平的超氧阴离子。氧自由基的产生是由Mn-II物种的一次电子过程氧化导致形成Mn-III氧化还原态物种所致,如2.7 eV的更高XANES边缘能所揭示。通过ESR直接或通过使用自旋捕集方法来表征超氧阴离子的形成。在抗坏血酸存在下的还原条件下,Mn-III还原为Mn-II导致邻位和对位化合物生成羟基自由基。这种salen-Mn络合物的有效生产O-2(.-)可能有助于评估抗氧化剂分子的清除性能。

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