Department of Chemistry and Key Laboratory of Organic Optoelectronics & Molecular Engineering of the Ministry of Education, Tsinghua University , Beijing 100084, China.
J Chem Theory Comput. 2016 Apr 12;12(4):1525-33. doi: 10.1021/acs.jctc.5b01040. Epub 2016 Mar 15.
A thorough theoretical study of the relative energies of various molecular Fe·4O isomers with different oxidation states of both Fe and O atoms is presented, comparing simple Hartree-Fock through many Kohn-Sham approximations up to extended coupled cluster and DMRG multiconfiguration benchmark methods. The ground state of Fe·4O is a singlet, hexavalent iron(VI) complex (1)C2v-Fe(VI)O2(O2)(2-), with isomers of oxidation states Fe(II), Fe(III), Fe(IV), Fe(V), and Fe(VIII) all lying slightly higher within the range of 1 eV. The disputed existence of oxidation state Fe(VIII) is discussed for isolated FeO4 molecules. Density functional theory (DFT) at various DF approximation (DFA) levels of local and gradient approaches, Hartree-Fock exchange and meta hybrids, range dependent, DFT-D and DFT+U models do not perform better for the relative stabilities of the geometric and electronic Fe·4O isomers than within 1-5 eV. The Fe·4O isomeric species are an excellent testing and validation ground for the development of density functional and wave function methods for strongly correlated multireference states, which do not seem to always follow chemical intuition.
本文对不同价态的 Fe 和 O 原子的各种 Fe·4O 分子异构体的相对能量进行了深入的理论研究,比较了简单的 Hartree-Fock 到许多 Kohn-Sham 近似值,直至扩展的耦合簇和 DMRG 多组态基准方法。Fe·4O 的基态是一个单重态,六价铁(VI)配合物(1)C2v-Fe(VI)O2(O2)(2-),Fe(II)、Fe(III)、Fe(IV)、Fe(V)和 Fe(VIII)的异构体的氧化态略高,均在 1 eV 的范围内。本文讨论了孤立的 FeO4 分子中 Fe(VIII)氧化态的存在争议。在各种局部和梯度方法、Hartree-Fock 交换和介电混合、范围相关、DFT-D 和 DFT+U 模型的密度泛函理论(DFT)DFA 水平上,相对稳定的几何和电子 Fe·4O 异构体的密度泛函理论并不比在 1-5 eV 范围内更好。Fe·4O 异构体是发展强关联多参考态密度泛函和波函数方法的极好测试和验证基础,这些方法似乎并不总是遵循化学直觉。