首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Mononuclear manganese(iii) complexes with reduced imino nitroxide radicals by single-electron transfer and intermolecular hydrogen bonds as an intramolecular structural driving force
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Mononuclear manganese(iii) complexes with reduced imino nitroxide radicals by single-electron transfer and intermolecular hydrogen bonds as an intramolecular structural driving force

机译:单电子转移和分子间氢键作为分子内结构驱动力的单电子转移和分子间氢键,单核锰(III)复合物。

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Manganese(iii) complexes were synthesized by one-electron transfer from a Mn(ii) ion to the imino nitroxide radical 2-(2-imidazolyl)-4,4,5,5-tetramethylimidazoline-1-oxyl (IMImH) in methanol. After the manganese ions attained the +III oxidation state, the imino nitroxide radicals were found to be irreversibly reduced in the complexes. Depending on the synthesis conditions, two complexes differing by their counter-anions were isolated as single crystals. These are [Mn(IMHIm)(2)(MeOH)(2)]ClO4 center dot H2O (1) and [Mn(IMHIm)(2)(MeOH)(2)]PF6 (2), which crystallize in the monoclinic P2(1)/n and triclinic P1 space groups, respectively. The two complexes show Jahn-Teller distortions typical of Mn(iii) centres and only reduced radicals are coordinated, as indicated by the N-O bond lengths and electroneutrality. In addition, the crystal structure analyses reveal two intermolecular hydrogen bonding networks. One involves counter-anions, water molecules and reduced radicals, and the other involves coordinated methanol molecules and imidazole moieties. These intermolecular interactions are driving forces that stabilize the two complexes. They also suggest that the tautomer is in the amino imine-oxide form after reduction of the radical and reveal the deprotonation of the imidazole ring, which is required for electroneutrality. This assessment is supported by single-crystal X-ray diffraction, EPR and Raman spectroscopy as well as magnetic and electrochemical studies.
机译:通过从Mn(II)离子的单电子转移到亚氨基硝基氧化物自由基2-(2-咪唑基)-4,4,5,5-四甲基咪唑啉-1-氧基(IMIMH)中的单电子转移合成锰(III)复合物。 。在锰离子达到+ III氧化态后,发现亚氨基氮氧化物基团在复合物中不可逆地降低。取决于合成条件,用它们的反阴离子不同的两种复合物作为单晶分离。这些是[Mn(Imhim)(2)(MeOH)(2)(2)] ClO4中心点H 2 O(1)和[Mn(Imhim)(2)(2)(2)] PF6(2),其在单斜芯中结晶P2(1)/ n和三级P1空间组。两个配合物表现出的Jahn-Teller失真典型的Mn(III)中心和仅减少自由基协调,由N-O键长和电中性所指示的。另外,晶体结构分析显示出两个分子间氢键网络。一种涉及反阴离子,水分子和减少的自由基,另一个涉及协调甲醇分子和咪唑部分。这些分子间相互作用是驱动力,其稳定两种络合物。他们还表明,在减少自由基后,互氧化醚位于氨基酰胺氧化物形式,并揭示了咪唑环的去质子化,这是电力致动脉所需的。单晶X射线衍射,EPR和拉曼光谱以及磁性和电化学研究支持该评估。

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