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© 1976 Nature Publishing Group
© 1976 Nature Publishing Group
© 1976 Nature Publishing Group
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Primary photochemical event in vision: proton translocation.
Hypsorhodopsin: the first intermediate of the photochemical process in vision.
New memory devices based on the proton transfer process.
How was the proton transfer process in bis-3, 6-(2- benzoxazolyl)-pyrocatechol, single or double proton transfer?
Computer simulation of the initial proton transfer step in human carbonic anhydrase I.
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The photochemical electron transfer reactions of photosynthetic bacteria and plants.
Important quality aspects in the transfer process.
Neutrinos from the primary proton-proton fusion process in the Sun.
Proton transfer-mediated GPCR activation.
Proton transfer in catalysis by fumarase.
Excited-State Proton Transfer of Weak Photoacids Adsorbed on Biomaterials: Proton Transfer on Starch.
Thermal synthesis of silver nanoplates revisited: a modified photochemical process.
Assessing the importance of proton transfer reactions in DNA.
Proton transfer and energy coupling in the bacteriorhodopsin photocycle.
Proton transfer is rate-limiting for translocation of precursor proteins by the Escherichia coli translocase.
[Is vision measurement by vision tables accurate?].
Initial photophysical characterization of the proteorhodopsin optical proton sensor (PROPS).
Synthetic Applications of Proton-Coupled Electron Transfer.
Aqueous proton transfer across single-layer graphene.
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UV-Induced Proton Transfer between DNA Strands.
The proton transfer reactions catalyzed by yeast pyruvate kinase.
Is proton transfer the initial photochemical process in vision?
© 1976 Nature Publishing Group © 1976 Nature Publishing Group © 1976 Nature Publishing Group...
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Recommend Documents
Primary photochemical event in vision: proton translocation.
Hypsorhodopsin: the first intermediate of the photochemical process in vision.
New memory devices based on the proton transfer process.
How was the proton transfer process in bis-3, 6-(2- benzoxazolyl)-pyrocatechol, single or double proton transfer?
Computer simulation of the initial proton transfer step in human carbonic anhydrase I.
Branching Ratio between Proton Transfer and Electron Transfer Channels of a Bidirectional Proton-Coupled Electron Transfer.
Linear energy relationships in ground state proton transfer and excited state proton-coupled electron transfer.
The photochemical electron transfer reactions of photosynthetic bacteria and plants.
Important quality aspects in the transfer process.
Neutrinos from the primary proton-proton fusion process in the Sun.
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