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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Spin crossover and polymorphism in a family of 1,2-bis(4-pyridyl)ethene- bridged binuclear iron(ii) complexes. A key role of structural distortions
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Spin crossover and polymorphism in a family of 1,2-bis(4-pyridyl)ethene- bridged binuclear iron(ii) complexes. A key role of structural distortions

机译:1,2-双(4-吡啶基)乙烯桥联的双核铁(ii)配合物家族中的自旋交叉和多态性。结构变形的关键作用

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Two polymorphic modifications 1 and 3 of binuclear compound [{Fe(dpia)(NCS)_2}_2(bpe)] and pseudo-polymorphic modification [{Fe(dpia)(NCS)_2}_2(bpe)]·2CH _3OH (2), where dpia = di-(2-picolyl)amine, bpe = 1,2-bis(4-pyridyl) ethene, were synthesized, and their structures, magnetic properties, and M?ssbauer spectra were studied. Variable-temperature magnetic susceptibility measurements of three binuclear compounds show different types of magnetic behaviour. The complex 1 exhibits a gradual two-step spin crossover (SCO) suggesting the occurrence of the mixed [HS-LS] (HS: high spin, LS: low spin) pair at the plateau temperature (182 K), at which about 50% of the complexes undergoes a thermal spin conversion. The complex 2 displays an abrupt full one-step spin transition without hysteresis, centred at about 159 K. The complex 3 is paramagnetic over the temperature range 20-290 K. The single-crystal X-ray studies show that all three compounds are built up from the bpe-bridged binuclear molecules. The structure of 1 was solved for three spin isomers [HS-HS], [HS-LS], and [LS-LS] at three temperatures 300 K, 183 K, and 90 K. The crystal structures for 2 and 3 were determined for the [HS-HS] complexes at room temperature. The analysis of correlations between the structural characteristics and different types of magnetic behaviour for new 1-3 binuclear complexes, as well as for previously reported binuclear compounds, revealed that the SCO process (occurrence of full one-step, two-step, or partial (50%) SCO) is specified by the degree of distortion of the octahedral geometry of the [FeN_6] core, caused by both packing and strain effects arising from terminal and/or bridging ligands. The comparison of the magnetic properties and the networks of intra- and inter-molecular interactions in the crystal lattice for the family of related SCO binuclear compounds suggests that the intermolecular interactions play a predominant role in the cooperativeness of the spin transition relative to the intramolecular interactions through the bridging ligand.
机译:双核化合物[{Fe(dpia)(NCS)_2} _2(bpe)]的两个多态修饰1和3和伪多态修饰[{Fe(dpia)(NCS)_2} _2(bpe)]·2CH _3OH( 2)合成了dpia =二-(2-吡啶甲基)胺,bpe = 1,2-双(4-吡啶基)乙烯,并对其结构,磁性能和Msssbauer光谱进行了研究。三种双核化合物的可变温度磁化率测量结果显示出不同类型的磁行为。配合物1表现出逐渐的两步自旋交叉(SCO),这表明在平稳温度(182 K)约50°C时会出现混合的[HS-LS](HS:高自旋,LS:低自旋)对。 %的配合物经历热自旋转化。配合物2表现出突然的完整的一步自旋跃迁,没有磁滞,中心点约为159K。配合物3在20-290 K的温度范围内是顺磁性的。单晶X射线研究表明,所有这三种化合物都是从bpe桥接的双核分子在三个温度分别为300 K,183 K和90 K的情况下,对三种自旋异构体[HS-HS],[HS-LS]和[LS-LS]解析了1的结构。确定了2和3的晶体结构[HS-HS]配合物在室温下使用。对新的1-3双核络合物以及先前报道的双核化合物的结构特征与不同类型的磁行为之间的相关性进行分析后发现,SCO过程(发生完整的一步,两步或部分步(50%)SCO)由[FeN_6]磁芯的八面体几何形状的畸变程度指定,该畸变程度是由末端和/或桥联配体引起的堆积和应变效应共同引起的。相关SCO双核化合物家族的磁性和晶格内分子间和分子间相互作用网络的比较表明,相对于分子内相互作用,分子间相互作用在自旋跃迁的合作性中起主要作用通过桥接配体。

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