Toward Models for the Full Oxygen-Evolving Complex of Photosystem II by Ligand Coordination To Lower the Symmetry of the Mn3CaO4 Cubane: Demonstration That Electronic Effects Facilitate Binding of a Fifth Metal
收藏Figshare2015-12-17 更新2026-04-29 收录
下载链接:
https://figshare.com/articles/dataset/Toward_Models_for_the_Full_Oxygen_Evolving_Complex_of_Photosystem_II_by_Ligand_Coordination_To_Lower_the_Symmetry_of_the_Mn_sub_3_sub_CaO_sub_4_sub_Cubane_Demonstration_That_Electronic_Effects_Facilitate_Binding_of_a_Fifth_Metal/2041884
下载链接
链接失效反馈官方服务:
资源简介:
Synthetic model compounds have been targeted to benchmark and better understand the electronic structure, geometry, spectroscopy, and reactivity of the oxygen-evolving complex (OEC) of photosystem II, a low-symmetry Mn4CaOn cluster. Herein, low-symmetry MnIV3GdO4 and MnIV3CaO4 cubanes are synthesized in a rational, stepwise fashion through desymmetrization by ligand substitution, causing significant cubane distortions. As a result of increased electron richness and desymmetrization, a specific μ3-oxo moiety of the Mn3CaO4 unit becomes more basic allowing for selective protonation. Coordination of a fifth metal ion, Ag+, to the same site gives a Mn3CaAgO4 cluster that models the topology of the OEC by displaying both a cubane motif and a “dangler” transition metal. The present synthetic strategy provides a rational roadmap for accessing more accurate models of the biological catalyst.
创建时间:
2015-12-17



