Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - Proceedings of the National …, 2020 - National Acad Sciences
In photosynthetic reaction centers from purple bacteria (PbRC) and the water-oxidizing
enzyme, photosystem II (PSII), charge separation occurs along one of the two symmetrical …

Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - Proceedings of the National Academy of …, 2020 - JSTOR
In photosynthetic reaction centers from purple bacteria (PbRC) and the water-oxidizing
enzyme, photosystem II (PSII), charge separation occurs along one of the two symmetrical …

[PDF][PDF] Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamuraa, K Saitoa, H Ishikitaa - PNAS, 2020 - scholar.archive.org
Results Initial Electron Donor [PLPM] in PbRC. The excitonic coupling of 27 meV between
PL* and PM* in the PbRC protein environment (Table 1) is sufficiently larger than interaction …

Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - Proceedings of the National Academy of …, 2020 - cir.nii.ac.jp
抄録< jats: title> Significance</jats: title>< jats: p> In photosynthetic reaction centers from
purple bacteria (PbRC) and the water-splitting enzyme, photosystem II (PSII), light-induced …

Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - Proceedings of the …, 2020 - pubmed.ncbi.nlm.nih.gov
In photosynthetic reaction centers from purple bacteria (PbRC) and the water-oxidizing
enzyme, photosystem II (PSII), charge separation occurs along one of the two symmetrical …

Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers.

H Tamura, K Saito, H Ishikita - … of the National Academy of Sciences …, 2020 - europepmc.org
Results Initial Electron Donor [PLPM] in PbRC. The excitonic coupling of 27 meV between
PL* and PM* in the PbRC protein environment (Table 1) is sufficiently larger than interaction …

[HTML][HTML] Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - Proceedings of the National …, 2020 - National Acad Sciences
In photosynthetic reaction centers from purple bacteria (PbRC) and the water-oxidizing
enzyme, photosystem II (PSII), charge separation occurs along one of the two symmetrical …

[HTML][HTML] Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - … of the National Academy of Sciences …, 2020 - ncbi.nlm.nih.gov
Results Initial Electron Donor [PLPM] in PbRC. The excitonic coupling of 27 meV between
PL* and PM* in the PbRC protein environment (Table 1) is sufficiently larger than interaction …

Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers

H Tamura, K Saito, H Ishikita - Proceedings of the National …, 2020 - ui.adsabs.harvard.edu
In photosynthetic reaction centers from purple bacteria (PbRC) and the water-splitting
enzyme, photosystem II (PSII), light-induced electron transfer occurs only in one of the two …

Acquirement of water-splitting ability and alteration of the charge-separation mechanism in photosynthetic reaction centers.

H Tamura, K Saito, H Ishikita - … of the National Academy of Sciences …, 2020 - europepmc.org
In photosynthetic reaction centers from purple bacteria (PbRC) and the water-oxidizing
enzyme, photosystem II (PSII), charge separation occurs along one of the two symmetrical …