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Ligand-to-ligand electron transfer and temperature induced valence tautomerism in o-dioxolene chelated manganese complexes

机译:邻二氧戊烯螯合锰配合物中配体到配体的电子转移和温度诱导的价互变异构

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摘要

Three polymeric o-dioxolene chelated manganese(III) complexes, {[Mn ~(III)(H_2L~1)(Cl_4Cat) _2][Mn~(III)(Cl_4Cat)_2(H _2O)_2]}_∞ (1) (L~1 = N,N′-bis(2-pyridylmethyl)-1,4-butanediamine, Cl_4Cat = tetrachlorocatecholate dianion], {[Mn~(III((H_2L ~1)(Br_4Cat)_2][Mn~(III)(Br _4Cat)_2(H_2O)_2]·4DMF} _∞, (2) and {[Mn~(III)(H_2L ~2)(Br_4Cat)_2][Mn~(III)(Br _4Cat)_2(DMF)_2]}~∞ (3) (L ~2 = N,N′-bis(2-pyridylmethyl)-1,6-hexanediamine, Br _4Cat = tetrabromocatecholate dianion) have been synthesized and structures were determined by X-ray crystallography. All the complexes were fully characterized by various spectroscopic techniques and their electronic properties are described. It was found that the simple protonation or deprotonation of the bridging ligand (L~1 or L~2) coordinated to metal-dioxolene chromophore induce a change in the oxidation state of the coordinated dioxolene ligand without affecting the metal oxidation state. As a result, drastic change in the optical absorption properties of the complexes is observed in the visible and near-IR region as the transformation involves semiquinone-catecholate ligands. Moreover, all three complexes undergo thermally induced valence tautomerism in solution. For all the complexes, on increasing the temperature, the intensity of the lower energy Inter Valence Charge Transfer (IVCT) band at about 1930 nm increases with corresponding decrease of 600 nm band with an isosbestic point at 1820 nm due to the formation of mixed valence species Mn~(II)(X_4SQ)(X_4Cat) - from Mn~(III)(X_4Cat)2- (X = Cl or Br) by the transfer of one electron from Cat~(2-) to Mn~(III) center.
机译:三种聚合的邻二氧戊环螯合锰(III)络合物{[Mn〜(III)(H_2L〜1)(Cl_4Cat)_2] [Mn〜(III)(Cl_4Cat)_2(H _2O)_2]} _∞(1 )(L〜1 = N,N'-双(2-吡啶基甲基)-1,4-丁二胺,Cl_4Cat =四氯儿茶酚酸二阴离子],{[Mn〜(III((H_2L〜1)(Br_4Cat)_2] [Mn〜 (III)(Br _4Cat)_2(H_2O)_2]·4DMF}_∞,(2)和{[Mn〜(III)(H_2L〜2)(Br_4Cat)_2] [Mn〜(III)(Br _4Cat) _2(DMF)_2]}〜∞(3)(L〜2 = N,N'-双(2-吡啶基甲基)-1,6-己二胺,Br _4Cat =四溴儿茶酚酸二阴离子)已经合成,结构由X确定射线晶体学:所有配合物均通过各种光谱技术进行了充分表征,并描述了其电子性质,发现与金属二氧杂环戊烯生色团配位的桥联配体(L〜1或L〜2)的简单质子化或去质子化在不影响金属氧化态的情况下改变了配位二氧杂环戊烯配体的氧化态,结果,光吸收特性发生了急剧变化由于转化涉及半醌-儿茶酚酸酯配体,因此在可见光和近红外区域观察到了复合物。而且,所有三种复合物在溶液中都经历热诱导的价互变异构。对于所有的配合物,随着温度的升高,由于形成混合价,在约1930 nm处较低能量的价间电荷转移(IVCT)谱带的强度增加,在1820 nm处具有等吸收点的600 nm谱带相应降低。 Mn〜(II)(X_4SQ)(X_4Cat)-Mn〜(III)(X_4Cat)2-(X = Cl或Br)中的一个物种,通过一个电子从Cat〜(2-)转移到Mn〜(III)中央。

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