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含五齿酰胺配体的锰(III)-烷基过氧配合物的光谱和结构表征

Spectroscopic and Structural Characterization of Mn(III)-Alkylperoxo Complexes Supported by Pentadentate Amide-Containing Ligands.

作者信息

Parham Joshua D, Wijeratne Gayan B, Rice Derek B, Jackson Timothy A

机构信息

Department of Chemistry and Center for Environmentally Beneficial Catalysis , University of Kansas , Lawrence , Kansas 66045 , United States.

出版信息

Inorg Chem. 2018 Mar 5;57(5):2489-2502. doi: 10.1021/acs.inorgchem.7b02793. Epub 2018 Feb 15.

DOI:10.1021/acs.inorgchem.7b02793
PMID:29446930
Abstract

Manganese-alkylperoxo species have been proposed as important intermediates in certain enzymatic pathways and are presumed to play a key role in catalytic substrate oxidation cycles involving manganese catalysts and peroxide oxidants. However, structural and spectroscopic understanding of these intermediates is very limited, with only one series of synthetic Mn-alkylperoxo complexes having been reported. In the present study, we describe the formation and properties of two new Mn-alkylperoxo complexes, namely, [Mn(OO Bu)(dpaq)] and [Mn(OO Bu)(dpaq)], which utilize the anionic, amide-containing pentadentate dpaq ligand platform. These complexes were generated by reacting the corresponding Mn precursors with a large excess of BuOOH at -15 °C in MeCN. In both cases, the corresponding mononuclear Mn-hydroxo complexes [Mn(OH)(dpaq)] and [Mn(OH)(dpaq)] are observed as intermediates en route to the Mn-alkylperoxo adducts. These new Mn-alkylperoxo complexes were characterized by electronic absorption, infrared, and Mn K-edge X-ray absorption spectroscopies. Complementary density functional theory calculations were also performed to gain insight into their bonding and structural properties. Compared to previously reported Mn-alkylperoxo adducts, the Mn centers in these complexes exhibit significantly altered primary coordination spheres, with a strongly donating anionic amide nitrogen located trans to the alkylperoxo moiety. This results in Mn-alkylperoxo bonding that is dominated by σ-interactions between the alkylperoxo π*(O-O) orbital and the Mn d orbital.

摘要

锰-烷基过氧物种已被认为是某些酶促途径中的重要中间体,并被推测在涉及锰催化剂和过氧化物氧化剂的催化底物氧化循环中起关键作用。然而,对这些中间体的结构和光谱学认识非常有限,仅报道过一系列合成的锰-烷基过氧配合物。在本研究中,我们描述了两种新型锰-烷基过氧配合物,即[Mn(OO Bu)(dpaq)]和[Mn(OO Bu)(dpaq)]的形成和性质,它们利用了含酰胺的阴离子五齿dpaq配体平台。这些配合物是通过在-15℃下于乙腈中使相应的锰前体与大量过量的叔丁基过氧化氢反应生成的。在这两种情况下,相应的单核锰-羟基配合物[Mn(OH)(dpaq)]和[Mn(OH)(dpaq)]在形成锰-烷基过氧加合物的过程中均作为中间体被观察到。这些新型锰-烷基过氧配合物通过电子吸收光谱、红外光谱和锰K边X射线吸收光谱进行了表征。还进行了互补的密度泛函理论计算,以深入了解它们的键合和结构性质。与先前报道的锰-烷基过氧加合物相比,这些配合物中的锰中心表现出显著改变的一级配位球,其中一个强供电子的阴离子酰胺氮位于烷基过氧部分的反位。这导致锰-烷基过氧键合主要由烷基过氧π*(O-O)轨道与锰d轨道之间的σ相互作用主导。

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Molecules. 2021 Nov 25;26(23):7151. doi: 10.3390/molecules26237151.
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Influence of Thiolate versus Alkoxide Ligands on the Stability of Crystallographically Characterized Mn(III)-Alkylperoxo Complexes.硫醇盐与醇盐配体对结晶态 Mn(III)-烷氧过氧化物配合物稳定性的影响。
J Am Chem Soc. 2021 Apr 28;143(16):6104-6113. doi: 10.1021/jacs.0c13001. Epub 2021 Apr 14.