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Analysis of the Puzzling Exchange-Coupling Constants in a Series of Heterobimetallic Complexes

机译:一系列双金属配合物中令人费解的交换耦合常数的分析

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摘要

The exchange-coupling constants (J) in a series of bimetallic complexes with an M2+(μ-OH)Fe3+ core (M = Mn, Fe, Ni, and Cu; series 1), which were reported in a recent study (Sano et al. Inorg. Chem. >2017, 56, 14118–14128), have been analyzed with the help of density functional theory (DFT) calculations. The experimental J values of series 1 showed the remarkable property that they were virtually independent of metal M. This behavior contrasts with that observed for a related series of complexes with M2+Fe3+ cores reported by Chaudhuri and co-workers (Biswas et al. Inorg. Chem. >2010, 49, 626–641) (series 2) in which J increases toward the upper end of the series. Broken symmetry DFT calculations for J, which yielded values in good agreement for the MnFe and NiFe complexes of series 1, gave for the CuFe complex a J value that was persistently much larger than that obtained from the experiment. Attempts to bridge the discrepancy by invoking various basis sets and corrections for hydrogen-bonding effects on J were not successful. The J values for series 1 were subsequently analyzed in the context of an exchange pathway model. From this analysis, it emerged that, in addition to the regular 2e-pathways, which contribute antiferromagnetic terms to J, there are also 3e-pathways that contribute ferromagnetic terms and have the propensity to keep J constant along series 1. It is shown that, while DFT evaluates the 2e-pathway terms reliably, this method seriously underestimates the 3e-pathway contributions, resulting in a too high J value for the CuFe complex of series 1. The pathway analysis of series 2 reveals that the 3e-pathway contributions to J are considerably smaller than those in series 1, resulting in J values that increase toward the upper end of the series, in accordance with the experiment.
机译:具有M 2 + (μ-OH)Fe 3 + 核(M = Mn,Fe,Ni的一系列双金属配合物的交换耦合常数(J)和最近的研究(Sano等人,Inorg。Chem。> 2017 ,56,14118–14128)中报道的铜和铜;系列1)已经借助密度泛函理论进行了分析。 (DFT)计算。系列1的实验J值显示出显着的性质,即它们实际上独立于金属M。这种行为与相关系列的M 2 + Fe 3+ < / sup> Chaudhuri及其同事报道的岩心(Biswas等人,Inorg。Chem。> 2010 ,49,626-641)(系列2),其中J朝系列的上端增加。对J的破碎对称DFT计算得出的值与系列1的MnFe和NiFe配合物非常吻合,得出CuFe配合物的J值始终比从实验中获得的值大得多。尝试通过调用各种基础集来弥合差异,并且对氢键对J的影响的校正均未成功。随后在交换途径模型的背景下分析了系列1的J值。从该分析得出的结论是,除了规则的2e路径对J贡献反铁磁项外,还有3e路径对铁磁性项起作用并具有沿序列1保持J恒定的倾向。 ,尽管DFT可靠地评估了2e途径的项,但该方法严重低估了3e途径的贡献,导致系列1的CuFe络合物的J值太高。系列2的途径分析表明3e途径的贡献在于根据实验,J大大小于系列1中的J,导致J值朝系列的上端增加。

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