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Energetic and regulatory role of proton potential in chloroplasts
A. N. Tikhonov
Lomonosov Moscow State University
Research output
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Contribution to journal
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Review article
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peer-review
43
Citations (Scopus)
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Keyphrases
Chloroplast
100%
Proton Potential
100%
Regulatory Role
100%
Electron Transport
33%
ATP Synthase
33%
Energy Storage Devices
16%
Phosphorylation
16%
Structural Features
16%
Induced Activation
16%
Plant Cells
16%
PH Dependence
16%
Light-induced
16%
Calvin-Benson Cycle
16%
ATP Synthesis
16%
Non-photochemical Quenching
16%
Transmembrane
16%
Photosynthetic Control
16%
Hydrogen Ion
16%
Chlorophyll a (Chl a)
16%
Light-harvesting Antenna
16%
Light Energy
16%
Energy Feature
16%
Reaction Activation
16%
Hydrogen Potential
16%
Electrochemical Potential
16%
Transport Enhancement
16%
Energy Converting
16%
Chloroplast Thylakoid Membranes
16%
INIS
chloroplasts
100%
protons
100%
ph value
71%
atp
42%
energy
28%
concentration
28%
transport
28%
electrons
28%
electrochemistry
14%
space
14%
regulations
14%
reviews
14%
control
14%
excitation
14%
harvesting
14%
synthesis
14%
potentials
14%
antennas
14%
membranes
14%
quenching
14%
phosphorylation
14%
photochemistry
14%
organelles
14%
plant cells
14%
chlorophyll
14%
hydrogen ions
14%
stored energy
14%
Biochemistry, Genetics and Molecular Biology
Chloroplast
100%
Energy Transfer
100%
Electron Transport
28%
ATP Synthase
28%
Non-Photochemical Quenching
14%
Thylakoid Membrane
14%
Proton
14%
Adenosine Triphosphate
14%