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Correlation Between Structural Spectroscopic and Reactivity Properties Within a Series of Structurally Analogous Metastable Manganese(III)-Alkylperoxo Complexes

机译:结构光谱和反应特性的相关性在结构类似的锰介稳的系列(III)-alkylperoxo配合

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摘要

Manganese–peroxos are proposed as key intermediates in a number of important biochemical and synthetic transformations. Our understanding of the structural, spectroscopic, and reactivity properties of these metastable species is limited, however, and correlations between these properties have yet to be established experimentally. Herein we report the crystallographic structures of a series of structurally related metastable Mn(III)–OOR compounds, and examine their spectroscopic and reactivity properties. The four reported Mn(III)–OOR compounds extend the number of known end-on Mn(III)–(η1-peroxos) to six. The ligand backbone is shown to alter the metal–ligand distances and modulate the electronic properties key to bonding and activation of the peroxo. The mechanism of thermal decay of these metastable species is examined via variable-temperature kinetics. Strong correlations between structural (O–O and Mn⋯Npy,quin distances), spectroscopic (E(πv*(O–O) → Mn CT band), νO–O), and kinetic (ΔH and ΔS) parameters for these complexes provide compelling evidence for rate-limiting O–O bond cleavage. Products identified in the final reaction mixtures of Mn(III)–OOR decay are consistent with homolytic O–O bond scission. The N-heterocyclic amines and ligand backbone (Et vs Pr) are found to modulate structural and reactivity properties, and O–O bond activation is shown, both experimentally and theoretically, to track with metal ion Lewis acidity. The peroxo O–O bond is shown to gradually become more activated as the N-heterocyclic amines move closer to the metal ion causing a decrease in π-donation from the peroxo πv*(O–O) orbital. The reported work represents one of very few examples of experimentally verified relationships between structure and function.
机译:有人建议将锰过氧化物作为许多重要生物化学和合成转化的关键中间体。但是,我们对这些亚稳物种的结构,光谱和反应性特性的了解是有限的,而且这些特性之间的相关性尚待实验确定。在这里,我们报告了一系列结构上相关的亚稳态Mn(III)–OOR化合物的晶体结构,并检查了它们的光谱学和反应性。报道的四种Mn(III)–OOR化合物将已知的末端Mn(III)–(η 1 -peroxos)数扩展至六个。配体主链可以改变金属-配体的距离,并调节电子特性,这是过氧化合物键合和活化的关键。这些亚稳态物质的热衰变机理是通过变温动力学来检验的。结构(O–O和Mn N py,quin 距离),光谱(E(πv*(O–O)→Mn CT谱带),νO–O)和动力学(这些复合物的ΔH和ΔS)参数为限速O–O键裂解提供了令人信服的证据。在Mn(III)–OOR分解的最终反应混合物中鉴定出的产物与均相O–O键断裂一致。 N-杂环胺和配体主链(Et与Pr)可调节结构和反应性,并且在实验和理论上均显示O-O键活化与金属离子Lewis酸度保持一致。随着N-杂环胺向金属离子的移动,过氧的O-O键逐渐被激活,导致过氧πv*(O-O)轨道的π供体减少。报告的工作代表了结构和功能之间经过实验验证的关系的极少数示例之一。

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