首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >New route to the mixed valence semiquinone-catecholate based mononuclear Fe-III and catecholate based dinuclear Mn-III complexes: First experimental evidence of valence tautomerism in an iron complex
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New route to the mixed valence semiquinone-catecholate based mononuclear Fe-III and catecholate based dinuclear Mn-III complexes: First experimental evidence of valence tautomerism in an iron complex

机译:混合价半醌-邻苯二酚基单核Fe-III和邻苯二酚基双核Mn-III配合物的新途径:铁络合物中价互变异构的第一个实验证据

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The semiquinone-catecholate based mixed valence complex, [Fe-III(bispicen) (Cl(4)Cat) (Cl(4)SQ)].DMF (1), and catecholate based (H(2)bispictn)[Mn-2(III)(Cl(4)Cat)(4)(DMF)(2)] (2) (bispicen N,N'-bis(2-pyridylmethyl)-1,2-ethanediamine, bispictn = N,N'-bis(2-pyridylmethyl)-1,3-propanediamine, Cl(4)Cat = tetrachlorocatecholate dianion, and Cl(4)SQ = tetrachloroserniquinone radical anion) were synthesized directly utilizing a facile route. Both the complexes have been characterized by single crystal X-ray diffraction study. The electronic structures have been elucidated by UV-vis-NIR absorption spectroscopy, cyclic voltammetry, EPR, and magnetic properties. The structural as well as spectroscopic features support the mixed valence tetrachlorosemiquinone-tetrachlorocatecholate charge distribution in 1. The ligand based mixed valence state was further confirmed by the presence of an intervalence charge transfer (IVCT) band in the 1900 nm region both in solution and in the solid. The intramolecular electron transfer, a phenomenon known as valence tautomerism (VT), has been followed by electronic absorption spectroscopy. For 1, the isomeric form [Fe-III(bispicen)(Cl(4)Cat) (Cl(4)SQ) is favored at low temperature, while at an elevated temperature, the [Fe-III(bispicen)(Cl(4)SQ)(2)] redox isomer dominates. Infrared as well as UV-vis-NIR spectral characterization for 2 suggest that the Mn-III(Cat)(2)(-) moiety is admixed with its mixed valence serniquinone-catecholate isomer Mn-III(SQ)(Cat)(-), and the electronic absorption spectrum is dominated by the mixed charged species. The origin of the intervalence charge transfer band in the 1900 nm range is associated with the mixed valence form, Mn-III(Cl(4)Cat)(Cl(4)SQ)(-). The observation of VT in complex 1 is the first example where a mixed valence semiquinonecatecholate iron(III) complex undergoes intramolecular electron transfer similar to manganese and cobalt complexes.
机译:基于半醌-儿茶酚酯的混合价复合物[Fe-III(bispicen)(Cl(4)Cat)(Cl(4)SQ)]。DMF(1)和基于儿茶酚酯的(H(2)bispictn)[Mn- 2(III)(Cl(4)Cat)(4)(DMF)(2)](2)(双picen N,N'-双(2-吡啶基甲基)-1,2-乙二胺,bispictn = N,N' -双(2-吡啶基甲基)-1,3-丙二胺,Cl(4)Cat =四氯儿茶酚酸二阴离子和Cl(4)SQ =四氯亚甲基苯醌自由基阴离子)是使用一种简便的方法直接合成的。两种配合物均已通过单晶X射线衍射研究表征。电子结构已经通过紫外可见近红外吸收光谱,循环伏安法,EPR和磁性能进行了阐明。结构和光谱特征支持1价四氯半醌-四氯儿茶酚酸的混合价分布。基于配体的混合价态通过溶液和1900 nm区域中存在间隔电荷转移(IVCT)带进一步证实。固体。分子内电子转移是一种称为价互变异构(VT)的现象,其后是电子吸收光谱法。对于1,[Fe-III(bispicen)(Cl(4)Cat)(Cl(4)SQ)的异构形式在低温下是有利的,而在高温下,[Fe-III(bispicen)(Cl(4)CQ( 4)SQ)(2)]氧化还原异构体占主导地位。红外和2的UV-vis-NIR光谱表征表明Mn-III(Cat)(2)(-)部分与其混合价合Sernerquinone-catecholate异构体Mn-III(SQ)(Cat)(- ),而电子吸收光谱则由混合的带电物质主导。 1900 nm范围内的间隔电荷转移带的起源与混合价态Mn-III(Cl(4)Cat)(Cl(4)SQ)(-)相关。在配合物1中观察到VT是第一个例子,其中混合价半醌-儿茶酸铁(III)配合物经历了类似于锰和钴配合物的分子内电子转移。

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