Fu You-Jun, Yang Xin, Wang Xue-Bin, Wang Lai-Sheng
W. R. Wiley Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, and Department of Physics, Washington State University, Richland, Washington 99352, USA.
Inorg Chem. 2004 Jun 14;43(12):3647-55. doi: 10.1021/ic0495261.
We used photoelectron spectroscopy (PES) to study how the terminal ligands influence the electronic structure and redox properties of the [4Fe-4S] cubane in several series of ligand-substituted analogue complexes: Fe(4)S(4)Cl(4-x)(CN)(x), Fe(4)S(4)Cl(4-x)(SCN)(x), Fe(4)S(4)Cl(4-x)(OAc)(x), Fe(4)S(4)(SC(2)H(5))(4-x)(OPr)(x), and Fe(4)S(4)(SC(2)H(5))(4-x)Cl(x) (x = 0-4). All the ligand-substituted complexes gave similar PES spectral features as the parents, suggesting that the mixed-ligand coordination does not perturb the electronic structure of the cubane core significantly. The terminal ligands, however, have profound effects on the electron binding energies of the cubane and induce significant shifts of the PES spectra, increasing in the order SC(2)H(5)(-) --> Cl(-) --> OAc(-)/OPr(-) --> CN(-) --> SCN(-). A linear relationship between the electron binding energies and the substitution number x was observed for each series, indicating that each ligand contributes independently and additively to the total binding energy. The electron binding energies of the gaseous complexes represent their intrinsic oxidation energies; the observed linear dependence on x is consistent with similar observations on the redox potentials of mixed-ligand cubane complexes in solution. The current study reveals the electrostatic nature of the interaction between the [4Fe-4S] cubane core and its coordination environment and provides further evidence for the electronic and structural stability of the cubane core and its robustness as a structural and functional unit in Fe-S proteins.
我们使用光电子能谱(PES)研究了末端配体如何影响一系列配体取代的类似物配合物中[4Fe-4S]立方烷的电子结构和氧化还原性质:Fe(4)S(4)Cl(4-x)(CN)(x)、Fe(4)S(4)Cl(4-x)(SCN)(x)、Fe(4)S(4)Cl(4-x)(OAc)(x)、Fe(4)S(4)(SC(2)H(5))(4-x)(OPr)(x)和Fe(4)S(4)(SC(2)H(5))(4-x)Cl(x)(x = 0 - 4)。所有配体取代的配合物都给出了与母体类似的PES光谱特征,这表明混合配体配位不会显著扰乱立方烷核心的电子结构。然而,末端配体对立方烷的电子结合能有深远影响,并导致PES光谱发生显著位移,位移顺序为SC(2)H(5)(-) --> Cl(-) --> OAc(-)/OPr(-) --> CN(-) --> SCN(-)。在每个系列中都观察到电子结合能与取代数x之间存在线性关系,这表明每个配体对总结合能的贡献是独立且累加的。气态配合物的电子结合能代表其固有氧化能;观察到的对x的线性依赖性与对溶液中混合配体立方烷配合物氧化还原电位的类似观察结果一致。当前研究揭示了[4Fe-4S]立方烷核心与其配位环境之间相互作用的静电性质,并为立方烷核心的电子和结构稳定性及其作为铁硫蛋白中结构和功能单元的稳健性提供了进一步证据。