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(07D101) Geometric structure, electronic structure, and spin transition of several Fe~(II) spin-crossover molecules

机译:(07D101)几何结构,电子结构和旋转过渡几种Fe〜(ii)旋转分子

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We present a density functional study on the geometric structure, electronic structure, and spin transition of a series of Fe~(II) spin-crossover (SCO) molecules, i.e., [Fe(abpt)_2(NCS)_2] (1), [Fe(abpt)_2(NCSe)_2] (2), and [Fe(dpbo)(HIm)_2] (3) with dpbo= {diethyl(E,E)-2,2'-[1,2-phenylbis (iminomethylidyne)]bis[3-oxobutanoate](2-)-N,N',O~3,O~(3,)}, and abpt= {4-amino-3,5-bis(pyridin-2-yl)-1,2,4-triazole} in order to explore more about the way to control SCO behavior of transition metal complexes. Our calculated results show that the spin transition of these Fe~(II) molecules is accompanied with charge transfer between the Fe atom and ligands. This causes change in the electrostatic energy (ΔU) as well as the total electronic energy of SCO molecules. Moreover, our calculated results demonstrate an important contribution of the interionic interactions to AU, and there is the relation between AU and the thermal hysteresis behavior of SCO molecules. These results should be helpful for developing new SCO molecules.
机译:我们对几何结构,电子结构和一系列Fe〜(ii)旋转交叉(SCO)分子的旋转转变提供了密度函数研究,即[Fe(ABPT)_2(NCS)_2](1) ,[Fe(Abpt)_2(NCSE)_2](2),和[Fe(DPBO)(HIM)_2](3),DPBO = {二乙基(E,E)-2,2' - [1,2 -phenylbis(Iminomethylidyne)]双[3-氧脱丁酸](2 - ) - n,n',O〜3,O〜(3,)},ABPT = {4-氨基-3,5-双(吡啶 - 2-yl)-1,2,4-tri唑}为了更多地探索控制过渡金属配合物的SCO行为的方法。我们计算的结果表明,这些Fe〜(II)分子的旋转过渡伴随着Fe原子和配体之间的电荷转移。这导致静电能量(ΔU)的变化以及SCO分子的总电子能量。此外,我们的计算结果表明了与AU的间面相互作用的重要贡献,并且AU与SCO分子的热滞后行为之间存在关系。这些结果应该有助于开发新的SCO分子。

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