User:María Sánchez Morán/TFGBibliografia
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#Kawashima, K.; Takaoka, T.; Kimura, H.; Saito, K.; Ishikita, H. O2 evolution and recovery of the water-oxidizing enzyme. ''Nat. Commun.'' '''2018'''. 9, 1-11 | #Kawashima, K.; Takaoka, T.; Kimura, H.; Saito, K.; Ishikita, H. O2 evolution and recovery of the water-oxidizing enzyme. ''Nat. Commun.'' '''2018'''. 9, 1-11 | ||
#Siegbahn, P.E.M. Water oxidation mechanism in photosystem II, including oxidations, proton release pathways, O-O bond formation and O<sub>2</sub> release. ''Biochim Biophys Acta''. '''2013'''. 1827, 1003-1019 | #Siegbahn, P.E.M. Water oxidation mechanism in photosystem II, including oxidations, proton release pathways, O-O bond formation and O<sub>2</sub> release. ''Biochim Biophys Acta''. '''2013'''. 1827, 1003-1019 | ||
- | #Saito, K.; Ishikita, H. Mechanism of protonation of the over-reduced | + | #Saito, K.; Ishikita, H. Mechanism of protonation of the over-reduced Mn<sub>4</sub>CaO<sub>5</sub> cluster un photosystem II.'' Biochim. Biophys. Acta – Bioenerg.'' '''2019'''. 1860, 148059 |
#Zhang, B.; Sun, L. Across the board: Licheng Sun on the mechanism of O-O bond formation in photosystem II. ''ChemSusChem''. '''2019'''. 12, 3401-3404 | #Zhang, B.; Sun, L. Across the board: Licheng Sun on the mechanism of O-O bond formation in photosystem II. ''ChemSusChem''. '''2019'''. 12, 3401-3404 | ||
#Zhang, B.; Sun, L.; Why nature chose the Mn4CaO5 cluster as water-splitting catalyst in photosystem II: a new hypothesis for the mechanism of O-O bond formation. ''Dalton Trans''. '''2018'''. 47, 14381-14387 | #Zhang, B.; Sun, L.; Why nature chose the Mn4CaO5 cluster as water-splitting catalyst in photosystem II: a new hypothesis for the mechanism of O-O bond formation. ''Dalton Trans''. '''2018'''. 47, 14381-14387 |