Tandon Swetanshu, Steuber Friedrich W, Kathalikkattil Amal C, Venkatesan Munuswamy, Watson Graeme W, Schmitt Wolfgang
School of Chemistry & CRANN Institute, University of Dublin, Trinity College, Dublin 2, Ireland.
AMBER Center, University of Dublin, Trinity College, Dublin 2, Ireland.
Inorg Chem. 2021 Jun 21;60(12):8388-8393. doi: 10.1021/acs.inorgchem.1c00984. Epub 2021 Jun 2.
High-nuclearity Mn complexes have attracted significant scientific attention due to their fascinating magnetic properties and their relevance to bioinorganic systems and catalysis. In this work, we demonstrate how the strong binding characteristics of phosphonate ligands can be coupled with sterically hindered carboxylate groups to influence the symmetry of Mn coordination clusters. We describe the structure of two high-nuclearity Mn coordination cages, {Mn} and {Mn}, synthesized using this approach. These cages are structurally related to the truncated tetrahedral geometry and adopt rare topological features of Archimedean and Johnson-type solids. Their structural attributes distinctively influence their magnetic properties and electrocatalytic HO oxidation characteristics.
高核锰配合物因其迷人的磁性以及与生物无机体系和催化作用的相关性而备受科学界关注。在这项工作中,我们展示了膦酸酯配体的强结合特性如何与空间位阻羧酸基团相结合,以影响锰配位簇的对称性。我们描述了使用这种方法合成的两个高核锰配位笼{Mn}和{Mn}的结构。这些笼子在结构上与截顶四面体几何形状相关,并呈现出阿基米德型和约翰逊型固体的罕见拓扑特征。它们的结构属性显著影响其磁性和电催化HO氧化特性。