首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Lattice-Solvent Effects in the Spin-Crossover of an Fe(II)-Based Material. The Key Role of Intermolecular Interactions between Solvent Molecules
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Lattice-Solvent Effects in the Spin-Crossover of an Fe(II)-Based Material. The Key Role of Intermolecular Interactions between Solvent Molecules

机译:在基于Fe(II)的材料的旋转交叉中的晶格 - 溶剂效应。 溶剂分子之间分子间相互作用的关键作用

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摘要

The spin transition of Fe(II) complexes is the subject of intensive synthetic and computational efforts. In this manuscript, we analyze the spin crossover (SCO) of [Fe(Edpsp)(2)](2+) (1), which features a spin transition depending on the cocrystallizing solvent molecules. Whereas the use of acetone results in a hysteretic spin transition at similar to 170 K, the use of propylene carbonate (PC) results in a permanent diamagnetic signal up to 300 K. By means of DFT+U+D2 calculations in the solid state of the material, we unravel the reasons for such different behavior. Our results allow us to ascribe the relatively low transition temperature of 1(BF4)(2.) acetone to the distorted arrangement of the SCO molecules in the low-spin state of the material. In turn, intermolecular interactions play the primary role in the case of 1(BF4)(2).2PC. In particular, we found that solvent-solvent interactions actively promote the stability of the low-spin state due to the formation of PC dimers. These dimers would appear at larger distances in the high-spin phase, with the subsequent loss of phase stability. This is yet another proof of how subtle is the spin transition phenomenon in Fe(II)-based architectures.
机译:Fe(II)复合物的旋转过渡是密集合成和计算努力的主题。在该稿件中,我们分析[Fe(EDPSP)(2)](2 +)(1)的旋转交叉(SCO),其特征在于根据聚晶化溶剂分子进行旋转过渡。虽然使用丙酮导致类似于170k的滞后转换,但使用丙烯碳酸亚丙酯(PC)导致永久性抗磁信号,可通过DFT + U + D2计算在固态中的DFT + U + D2计算。材料,我们解开了这种不同行为的原因。我们的结果允许我们将相对较低的1(BF4)(2.)丙酮的过渡温度归因于材料的低自旋状态下的SCO分子的扭曲布置。反过来,分子间相互作用在1(bf4)(2).2pc的情况下发挥主要作用。特别地,我们发现溶剂 - 溶剂相互作用由于PC二聚体的形成而主动促进低旋转状态的稳定性。这些二聚体将在高旋转相的较大距离处出现,随后的相位稳定性损失。这是另一种微妙的典型证明是在Fe(II)的型架构中的旋转过渡现象。

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