Publication | Open Access
<i>S</i> = 3 Ground State for a Tetranuclear Mn<sup>IV</sup><sub>4</sub>O<sub>4</sub> Complex Mimicking the S<sub>3</sub> State of the Oxygen-Evolving Complex
26
Citations
72
References
2020
Year
The S<sub>3</sub> state is currently the last observable intermediate prior to O-O bond formation at the oxygen-evolving complex (OEC) of Photosystem II, and its electronic structure has been assigned to a homovalent Mn<sup>IV</sup><sub>4</sub> core with an <i>S</i> = 3 ground state. While structural interpretations based on the EPR spectroscopic features of the S<sub>3</sub> state provide valuable mechanistic insight, corresponding synthetic and spectroscopic studies on tetranuclear complexes mirroring the Mn oxidation states of the S<sub>3</sub> state remain rare. Herein, we report the synthesis and characterization by XAS and multifrequency EPR spectroscopy of a Mn<sup>IV</sup><sub>4</sub>O<sub>4</sub> cuboidal complex as a spectroscopic model of the S<sub>3</sub> state. Results show that this Mn<sup>IV</sup><sub>4</sub>O<sub>4</sub> complex has an <i>S</i> = 3 ground state with isotropic <sup>55</sup>Mn hyperfine coupling constants of -75, -88, -91, and 66 MHz. These parameters are consistent with an αααβ spin topology approaching the trimer-monomer magnetic coupling model of pseudo-octahedral Mn<sup>IV</sup> centers. Importantly, the spin ground state changes from <i>S</i> = 1/2 to <i>S</i> = 3 as the OEC is oxidized from the S<sub>2</sub> state to the S<sub>3</sub> state. This same spin state change is observed following oxidation of the previously reported Mn<sup>III</sup>Mn<sup>IV</sup><sub>3</sub>O<sub>4</sub> cuboidal complex to the Mn<sup>IV</sup><sub>4</sub>O<sub>4</sub> complex described here. This sets a synthetic precedent for the observed low-spin to high-spin conversion in the OEC.
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