Zhai Hua-Jin, Yang Xin, Fu You-Jun, Wang Xue-Bin, Wang Lai-Sheng
Department of Physics, Washington State University, 2710 University Drive, Richland, Washington 99352, USA.
J Am Chem Soc. 2004 Jul 14;126(27):8413-20. doi: 10.1021/ja0498437.
Gaseous Fe(4)S(n)(-) (n = 4-6) clusters and synthetic analogue complexes, Fe(4)S(4)L(n)(-) (L = Cl, Br, I; n = 1-4), were produced by laser vaporization of a solid Fe/S target and electrospray from solution samples, respectively, and their electronic structures were probed by photoelectron spectroscopy. Low binding energy features derived from minority-spin Fe 3d electrons were clearly distinguished from S-derived bands. We showed that the electronic structure of the simplest Fe(4)S(4)(-) cubane cluster can be described by the two-layer spin-coupling model previously developed for the [4Fe] cubane analogues. The photoelectron data revealed that each extra S atom in Fe(4)S(5)(-) and Fe(4)S(6)(-) removes two minority-spin Fe 3d electrons from the [4Fe--4S] cubane core and each halogen ligand removes one Fe 3d electron from the cubane core in the Fe(4)S(4)L(n)(-) complexes, clearly revealing a behavior of sequential oxidation of the cubane over five formal oxidation states: 4Fe--4S --> 4Fe--4S --> 4Fe--4S --> 4Fe-4S --> 4Fe-4S. The current work shows the electron-storage capability of the [4Fe--4S] cubane, contributes to the understanding of its electronic structure, and further demonstrates the robustness of the cubane as a structural unit and electron-transfer center.
气态Fe(4)S(n)(-)(n = 4 - 6)簇合物及其合成类似物配合物Fe(4)S(4)L(n)(-)(L = Cl、Br、I;n = 1 - 4)分别通过固体Fe/S靶的激光汽化和溶液样品的电喷雾产生,其电子结构通过光电子能谱进行探测。源自少数自旋Fe 3d电子的低结合能特征与源自S的能带明显区分开来。我们表明,最简单的Fe(4)S(4)(-)立方烷簇合物的电子结构可以用先前为[4Fe]立方烷类似物开发的两层自旋耦合模型来描述。光电子数据表明,Fe(4)S(5)(-)和Fe(4)S(6)(-)中的每个额外S原子从[4Fe - 4S]立方烷核心中移除两个少数自旋Fe 3d电子,并且每个卤素配体在Fe(4)S(4)L(n)(-)配合物中从立方烷核心中移除一个Fe 3d电子,清楚地揭示了立方烷在五个形式氧化态上的顺序氧化行为:4Fe - 4S --> 4Fe - 4S --> 4Fe - 4S --> 4Fe - 4S --> 4Fe - 4S。当前工作展示了[4Fe - 4S]立方烷的电子存储能力,有助于理解其电子结构,并进一步证明了立方烷作为结构单元和电子转移中心的稳健性。