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首页> 外文期刊>International Journal of Quantum Chemistry >Electronic effect of beta-diketonato ligands on the redox potential of fac and mer tris(beta-diketonato) iron(III) complexes: A density functional theory study and molecular electrostatic potential analysis
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Electronic effect of beta-diketonato ligands on the redox potential of fac and mer tris(beta-diketonato) iron(III) complexes: A density functional theory study and molecular electrostatic potential analysis

机译:Beta-Diketonato配体对FAC和MER TRIS(BETA-DIKETONATO)铁(III)复合物的氧化还原潜力的电子效应:密度泛函理论研究和分子静电潜力分析

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Experimental redox potentials of 16 derivatives of tris(beta-diketonato)iron(III) complexes (where beta-diketonato(sic)(R1COCHCOR2)degrees, with substituents R-1 and R-2 in different combinations of H, C4H3S, C4H3O, CH3, Ph, CF3, or C (CH3)(3)), and 11 additional isomers, were studied theoretically in terms of the electronic properties, substituent effects, electron affinity, and molecular electrostatic potential (MESP) analysis, using density functional theory methods. The computational methods reproduced the experimental reduction potential to a very high level of accuracy, especially when the M062X functional was used (with mean absolute deviation [MAD] = 0.054 and 0.093 and correlation R-2 = 0.978 and 0.981 obtained by application of two slightly different free energy cycles, respectively). The most negative computed reduction potential corresponds to the most negative reported experimental reductions, which is indicative of the least favorable reduction potential, also in most cases the most stable molecules energetically. The calculated reduction potentials of the fac isomers of the molecules were generally higher (less negative) than that of the mer isomers when one of the ligand substituents R-1 or R-2 was CF3 (M062X results), indicating better ease of reduction, although in many cases, the experimental reduction potential agreed better with the calculated reduction potential of the mer isomer instead. The calculated reduction potentials were also affected by the substituents in the order of CF3 > H > C4H3S > C4H3O > Ph > CH3 > C(CH3)(3) (the most negative value). The stronger the electron withdrawing tendency of the substituent, the more favorable (less negative value) the reduction potential becomes. In relation to the CH3-substituted molecule 1 as a reference, the molecules with electron withdrawing substituents resulted in an electron-deficient MESP iso-surface, in both the neutral state and reduced state. All the molecules in their reduced state were characterized with an electron-deficient MESP iso-surface compared with the reduced CH3-substituted molecule 1, with the deficiency increasing in mer compared with fac, for both the neutral and reduced molecules. The relative MESP values of Delta V-Fe in the reduced state of the molecules were able to predict the corresponding experimental reduction potential to a significant level of accuracy (with MAD = 0.091).
机译:Tris(β-二酮)铁(III)复合物的16种衍生物的实验氧化还原电位(其中β-二酮(SiC)(R1COCOCOR2),用取代基R-1和R-2在H,C4H3S,C4H3O的不同组合中,在理论上,通过使用密度泛函理论理论地研究了在理论上研究了在理论上进行了电子性质,取代基效应,电子亲和力和分子静电电位(MES)分析的理论上的另外的异构体的第3章,pH,CF 3或C(3))和11个另外的异构体方法。计算方法将实验降低电位转换为非常高的精度,特别是当使用M062x功能时(具有平均绝对偏差[MAD] = 0.054和0.093和0.093和0.981,通过稍微施加两个而获得的R-2 = 0.978和0.981。不同的自由能量周期)。最负面计算的降低电位对应于最负面报告的实验减少,这表明在大多数情况下也是最稳定的分子在大多数情况下最稳定的分子。当其中一个配体取代基R-1或R-2是CF 3(M062X结果)时,分子的FAS异构体的计算的降低电位通常高于MER异构体的电位,表明更好地减少,虽然在许多情况下,实验性降低潜力可以更好地同意MER异构体的计算潜力。计算出的降低电位也受到CF3> H> C 4 H 3 S> C4H 3 O> pH> CH 3> C(CH 3)(3)(最负值)的量级的影响。取代基的吸电子趋势越强,还原电位的更有利(较少值)变为。关于CH3取代的分子1作为参考,具有电子抽出取代基的分子导致电子缺陷的MES ISO-表面,中性状态和降低状态。其在其降低状态下的所有分子用电子缺陷的MES ISO表面表征,与还原的CH3取代的分子1相比,与FAC相比,对中性和还原的分子相比,MER的缺陷增加。分子的降低状态下δV-Fe的相对范值能够预测相应的实验降低电位以显着的精度(疯狂= 0.091)。

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