Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Proc Natl Acad Sci U S A. 2013 Jun 18;110(25):10084-8. doi: 10.1073/pnas.1302677110. Epub 2013 Jun 6.
Understanding the effect of redox-inactive metals on the properties of biological and heterogeneous water oxidation catalysts is important both fundamentally and for improvement of future catalyst designs. In this work, heterometallic manganese-oxido cubane clusters [MMn3O4] (M = Sr(2+), Zn(2+), Sc(3+), Y(3+)) structurally relevant to the oxygen-evolving complex (OEC) of photosystem II were prepared and characterized. The reduction potentials of these clusters and other related mixed metal manganese-tetraoxido complexes are correlated with the Lewis acidity of the apical redox-inactive metal in a manner similar to a related series of heterometallic manganese-dioxido clusters. The redox potentials of the [SrMn3O4] and [CaMn3O4] clusters are close, which is consistent with the observation that the OEC is functional only with one of these two metals. Considering our previous studies of [MMn3O2] moieties, the present results with more structurally accurate models of the OEC ([MMn3O4]) suggest a general relationship between the reduction potentials of heterometallic oxido clusters and the Lewis acidities of incorporated cations that applies to diverse structural motifs. These findings support proposals that one function of calcium in the OEC is to modulate the reduction potential of the cluster to allow electron transfer.
了解非氧化还原活性金属对生物和多相水氧化催化剂性质的影响,无论是从基础研究还是未来催化剂设计的角度来看,都非常重要。在这项工作中,我们制备并表征了结构上与光合作用 II 中的放氧复合物(OEC)相关的异核锰-过氧立方烷簇[MMn3O4](M = Sr(2+),Zn(2+),Sc(3+),Y(3+))。这些簇和其他相关的混合金属锰-四过氧配合物的还原电位与顶端非氧化还原活性金属的路易斯酸度相关,这与一系列相关的异核锰-二过氧簇类似。[SrMn3O4]和[CaMn3O4]簇的氧化还原电位接近,这与 OEC 仅用这两种金属之一起作用的观察结果一致。考虑到我们之前对[MMn3O2]部分的研究,本研究中使用更准确的 OEC([MMn3O4])结构模型的结果表明,异核过氧簇的还原电位与掺入阳离子的路易斯酸度之间存在一般关系,适用于不同的结构基序。这些发现支持了钙在 OEC 中的一个功能是调节簇的还原电位以允许电子转移的观点。