首页> 美国卫生研究院文献>Frontiers in Chemistry >Thermally-Induced Spin Crossover and LIESST Effect in the Neutral FeII(Mebik)2(NCX)2 Complexes: Variable-Temperature Structural Magnetic and Optical Studies (X = S Se; Mebik = bis(1-methylimidazol-2-yl)ketone)
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Thermally-Induced Spin Crossover and LIESST Effect in the Neutral FeII(Mebik)2(NCX)2 Complexes: Variable-Temperature Structural Magnetic and Optical Studies (X = S Se; Mebik = bis(1-methylimidazol-2-yl)ketone)

机译:中性FeII(Mebik)2(NCX)2配合物中的热诱导自旋交叉和LIESST效应:可变温度的结构磁性和光学研究(X = SSe; Mebik =双(1-甲基咪唑-2) -基)酮)

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摘要

Two new iron(II) neutral complexes of bis(1-methylimidazol-2-yl)ketone (Mebik) with molecular formula [FeII(Mebik)2(NCS)2] (>1) and [FeII(Mebik)2(NCSe)2] (>2) have been synthesized and characterized by magnetic measurements, single-crystal X-ray diffraction, and solid state UV-vis spectroscopy. The temperature dependent magnetic susceptibility measurements of crystalline samples of both compound show the occurrence of a gradual spin transition centered at T1/2 = 260 K and 326 K, respectively. The crystal structures of both compounds were determined at different temperatures, below and above the transition, in order to detect the structural changes associated with the spin transition. The main structural modifications, when passing from the low-spin to the high-spin form, consist of an important lengthening of the Fe-N(Mebik) and Fe-N (C-S/Se) distances (by ca. 0.20 and 0.18 Å, respectively) and a noticeable variation of the N-Fe-N angles, leading to a more distorted [Fe-N6] octahedron. The spin-transition phenomenon also affects the optical properties, with significant decrease of the intensity of the Metal-to-Ligand charge transfer band upon increasing the temperature. Finally, both complexes exhibit a light-induced excited spin-state trapping under laser light irradiation at low temperature. DFT calculations were also carried out on these complexes in order to rationalize the theoretically predicted magnetic and optical behavior with those of the experimental one. The results clearly highlights the dramatic alteration of the magneto-structural behavior of the tris-chelate [FeII(Mebik)3]2+ spin-crossover complex upon substituting one Mebik with NCS and NCSe ligands.
机译:双(1-甲基咪唑-2-基)酮( Me bik)的两种新的铁(II)中性配合物,分子式为[Fe II Me < / sup> bik)2(NCS)2](> 1 )和[Fe II Me bik)2(NCSe)2]( > 2 )已被合成并通过磁测量,单晶X射线衍射和固态紫外可见光谱进行表征。两种化合物的晶体样品的随温度变化的磁化率测量结果表明,分别发生了以T1 / 2 = 260 K和326 K为中心的逐渐的自旋转变。为了检测与自旋转变有关的结构变化,在过渡温度以下和以上的不同温度下测定了两种化合物的晶体结构。从低旋转形式转变为高旋转形式时,主要的结构修改包括对Fe-N(Mebik)和Fe-N(CS / Se)距离的重要延长(分别约为0.20和0.18Å) )和N-Fe-N角的明显变化,导致[Fe-N6]八面体更加失真。自旋转变现象还影响光学性质,随着温度的升高,金属-配体电荷转移带的强度显着降低。最后,两种络合物在低温下在激光照射下均表现出光诱导的激发自旋态俘获。还对这些配合物进行了DFT计算,以使理论预测的磁行为和光学行为与实验对象的行为合理化。结果清楚地表明了tris-chelate [ Fe II < / mtext> Me bik 3 ] 2 + 自旋交叉复合物。

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