首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis and characterization of manganese(II) and iron(III) d(5) tripodal imidazole complexes. Effect of oxidation state, protonation state and ligand conformation on coordination number and spin state
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Synthesis and characterization of manganese(II) and iron(III) d(5) tripodal imidazole complexes. Effect of oxidation state, protonation state and ligand conformation on coordination number and spin state

机译:锰(II)和铁(III)d(5)三脚架咪唑配合物的合成和表征。氧化态,质子化态和配体构象对配位数和自旋态的影响

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摘要

The 1 : 3 Schiff base condensates of tris(2-aminoethyl)amine (tren) or tris(3-aminopropyl)amine (trpn) with 4-methyl-5-imidazolecarboxaldehyde, H3L1 and H3L2, respectively, were generated in situ and used to prepare complexes with manganese(ii) and iron(iii). The resultant complexes, [MnH3L1](ClO4)(2,) [MnH3L1](ClO4)(2)center dot EtOH center dot H2O, [MnH3L2](ClO4)(2), [FeH3L1](ClO4)(3)center dot 1.5(EtOH) and [FeHL1](I-3) (0.525)(I)(0.475)center dot 2.625H(2)O, have been characterized by EA, IR, ES MS, variable temperature magnetic susceptibility, X-ray crystallography, and Mossbauer spectroscopy for the iron complexes. The three manganese(II) complexes are high spin with [MnH3L2](ClO4)(2) exhibiting coordination number seven while the others are six coordinate. [FeH3L1](ClO4)(3)center dot 1.5(EtOH) has two iron sites, a seven coordinate and a pseudo seven coordinate site. The complex is high spin at room temperature but exhibits a magnetic moment that decreases with temperature corresponding to conversion of one of the sites to low spin. [FeHL1](I-3) (0.525)(I)(0.475)center dot 2.625H(2)O is low spin even at room temperature. In the present complexes the apical nitrogen atom, N-ap, of the tripodal ligand is pyramidal and directed toward the metal atom. The data show that the M-N-ap distance decreases as the oxidation state of the metal increases, as the number of bound imidazole protons on the ligand increases, and as the number of carbon atoms in the backbone of the ligand (tren vs. trpn) increases. In a limiting sense, short M-N-ap distances result in high spin seven coordinate mono capped octahedral complexes and long M-N-ap distances result in low spin six coordinate octahedral complexes.
机译:原位生成三(2-氨基乙基)胺(tren)或三(3-氨基丙基)胺(trpn)与4-甲基-5-咪唑甲醛,H3L1和H3L2的1:3 Schiff碱缩合物,并使用制备与锰(ii)和铁(iii)的配合物。生成的络合物[MnH3L1](ClO4)(2,)[MnH3L1](ClO4)(2)中心点EtOH中心点H2O,[MnH3L2](ClO4)(2),[FeH3L1](ClO4)(3)中心点1.5(EtOH)和[FeHL1](I-3)(0.525)(I)(0.475)中心点2.625H(2)O的特征在于EA,IR,ES MS,可变温度磁化率,X-射线晶体学和Mossbauer光谱学研究铁络合物。三种锰(II)配合物具有高自旋性,其中[MnH3L2](ClO4)(2)的配位数为7,其他的均为6配位。 [FeH3L1](ClO4)(3)中心点1.5(EtOH)具有两个铁位点,一个七坐标和一个伪七坐标位。该复合物在室温下是高自旋的,但是表现出磁矩随温度降低而降低,这对应于位点之一向低自旋的转化。 [FeHL1](I-3)(0.525)(I)(0.475)中心点2.625H(2)O即使在室温下也是低自旋的。在本发明的配合物中,三脚架配体的顶部氮原子N-ap是金字塔形的并且指向金属原子。数据表明,MN-ap距离随着金属的氧化态的增加,配体上结合的咪唑质子数的增加以及配体主链中碳原子数的增加而减小(tren vs. trpn)增加。从限制性的意义上讲,短的M-N-ap距离会导致自旋七坐标单封八面体的高自旋,而长的M-N-ap距离会导致自旋六坐标八面体的低旋合。

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