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Title: Comparison of the manganese cluster in oxygen-evolving photosystem II with distorted cubane manganese compounds through X-ray absorption spectroscopy

Journal Article · · Inorganic Chemistry
DOI:https://doi.org/10.1021/ic991003j· OSTI ID:20013073

X-ray absorption spectroscopy has been employed to assess the degree of similarity between the oxygen-evolving complex (OEC) in photosystem II (PS II) and a family of synthetic manganese complexes containing the distorted cubane [Mn{sub 4}O{sub 3}X] core (C = benzoate, acetate, methoxide, hydroxide, azide, fluoride, chloride, or bromide). These [Mn{sub 4}({mu}{sub 3}-O){sub 3}({mu}{sub 3}-X)] cubanes possess C{sub 3}{nu} symmetry except for the X = benzoate species, which is slightly more distorted with only C{sub s} symmetry. In addition, Mn{sub 4}O{sub 3}Cl complexes containing three or six terminal Cl ligands at three of the Mn were included in this study. The Mn K-edge X-ray absorption near edge structure (XANES) from the oxygen-ligated complexes begin to resemble general features of the PS II (S{sub 1} state) spectrum, although the second derivatives are distinct from those in PS II. The extended X-ray absorption fine structure (EXAFS) of these Mn compounds also displays superficial resemblance to that of PS II, but major differences emerge on closer examination of the phases and amplitudes. The most obvious distinction is the smaller magnitude of the Fourier transform (FT) of the PS II EXAFS compared to the FTs from the distorted cubanes. Curve fitting of the Mn EXAFS spectra verifies the known core structures of the Mn cubanes, and shows that the number of the crucial 2.7 and 3.3 {angstrom} Mn-Mn distance differs from that observed in the OEC. The EXAFS method detects small changes in the core structures as X is varied in this series, and serves to exclude the distorted cubane of C{sub 3{nu}} symmetry as a topological model for the Mn catalytic cluster of the OEC. Instead, the method shows that even more distortion of the cubane framework, altering the ratio of the Mn-Mn distances, is required to resemble the Mn cluster in PS II.

Research Organization:
Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE; National Institutes of Health (NIH)
DOE Contract Number:
AC03-76SF00098
OSTI ID:
20013073
Journal Information:
Inorganic Chemistry, Vol. 38, Issue 26; Other Information: PBD: 27 Dec 1999; ISSN 0020-1669
Country of Publication:
United States
Language:
English