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Structural and spectroscopic characterization of metastable thiolate-ligated manganese(III)-alkylperoxo species.


ABSTRACT: Metastable Mn-peroxo species are proposed to form as key intermediates in biological oxidation reactions involving O(2) and C-H bond activation. The majority of these have yet to be spectroscopically characterized, and their inherent instability, in most cases, precludes structural characterization. Cysteinate-ligated metal-peroxos have been shown to form as reactive intermediates in both heme and nonheme iron enzymes. Herein we report the only examples of isolable Mn(III)-alkylperoxo species, and the first two examples of structurally characterized synthetic thiolate-ligated metal-peroxos. Spectroscopic data, including electronic absorption and IR spectra, and ESI mass spectra for (16)O vs (18)O-labeled metastable Mn(III)-OOR (R = (t)Bu, Cm) are discussed, as well as preliminary reactivity.

SUBMITTER: Coggins MK 

PROVIDER: S-EPMC3178334 | biostudies-literature | 2011 Aug

REPOSITORIES: biostudies-literature

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Structural and spectroscopic characterization of metastable thiolate-ligated manganese(III)-alkylperoxo species.

Coggins Michael K MK   Kovacs Julie A JA  

Journal of the American Chemical Society 20110727 32


Metastable Mn-peroxo species are proposed to form as key intermediates in biological oxidation reactions involving O(2) and C-H bond activation. The majority of these have yet to be spectroscopically characterized, and their inherent instability, in most cases, precludes structural characterization. Cysteinate-ligated metal-peroxos have been shown to form as reactive intermediates in both heme and nonheme iron enzymes. Herein we report the only examples of isolable Mn(III)-alkylperoxo species, a  ...[more]

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