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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Mapping the d-d Excited-State Manifolds of Transition Metal beta-Diiminato-Imido Complexes. Comparison of Density Functional Theory and CASPT2 Energetics
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Mapping the d-d Excited-State Manifolds of Transition Metal beta-Diiminato-Imido Complexes. Comparison of Density Functional Theory and CASPT2 Energetics

机译:映射过渡金属β-Diiminato-亚氨基配合物的d-d激发态流形。密度泛函理论与CASPT2能量学的比较

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Trigonal-planar, middle transition metal diiminato-imido complexes do not exhibit high-spin states, as might be naively expected on the basis of their low coordination numbers. Instead, the known Fe(III), Co(III), and Ni(III) complexes exhibit S = (3)/(2), S = 0, and S = (1)/(2), ground states, respectively. Kohn-Sham DFT calculations have provided a basic molecular orbital picture of these compounds as well as a qualitative rationale for the observed spin states. Reported herein are ab initio multiconfiguration second-order perturbation theory (CASPT2) calculations, which provide a relatively detailed picture of the d-d excited-state manifolds of these complexes. Thus, for a C-2v Fe-III(diiminato)(NPh) model complex, two near-degenerate states (B-4(2) and B-4(1)) compete as contenders for the ground state. Moreover, the high-spin sextet, two additional quartets and even a low-spin doublet all occur at <0.5 eV, relative to the ground state. For the Co(III) system, although CASPT2 reproduces an S = 0 ground state, as observed experimentally for a related complex, the calculations also predict two exceedingly low-energy triplet states; there are, however, no other particularly low-energy d-d excited states. In contrast to the Fe(III) and Co(III) cases, the Ni(III) complex has a clearly nondegenerate B-2(2) ground state. The CASPT2 energetics provide benchmarks against which we can evaluate the performance of several common DFT methods. Although none of the functionals examined perform entirely satisfactorily, the B3LYP hybrid functional provides the best overall spin-state energetics.
机译:三角平面的中间过渡金属diiminato-imido配合物没有表现出高自旋态,这可能是由于其低配位数而天真地预期的。相反,已知的Fe(III),Co(III)和Ni(III)配合物分别具有S =(3)/(2),S = 0和S =(1)/(2)基态。 。 Kohn-Sham DFT计算提供了这些化合物的基本分子轨道图,以及观察到的自旋态的定性原理。本文报道的是从头开始的多配置二阶微扰理论(CASPT2)计算,该计算提供了这些复合物的d-d激发态流形的相对详细的图片。因此,对于C-2v Fe-III(diiminato)(NPh)模型复合物,两个接近简并的状态(B-4(2)和B-4(1))竞争基态的竞争者。此外,相对于基态,高自旋六重奏,两个额外的四重奏,甚至是低自旋双重奏都出现在<0.5 eV的情况下。对于Co(III)系统,尽管CASPT2再现了S = 0的基态,如相关复合物的实验观察到的,该计算还预测了两个能量极低的三重态。但是,没有其他特别低能量的d-d激发态。与Fe(III)和Co(III)情况相反,Ni(III)配合物具有明显未简并的B-2(2)基态。 CASPT2能量学提供了基准,可以据此评估几种常见DFT方法的性能。尽管所检查的功能均不能完全令人满意,但是B3LYP杂合功能可提供最佳的整体自旋能。

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