Picosecond absorbance difference spectroscopy on the primary reactions and the antenna-excited states in Photosystem I particles
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- Type
- article
- Published
- 1986-07-02
- Cited by
- 139
- References
- 19
- OpenAlex
- https://openalex.org/W1975522077
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93145694
Keywords
Absorbance, Photochemistry, Light-harvesting complexes of green plants, Chemistry, Excited state
References
- Kinetic and spectral properties of the intermediary electron acceptor A1 in photosystem I
- Evidence for a new early acceptor in Photosystem I of plants. An ESR investigation of reaction center triplet yield and of the reduced intermediary acceptors
- Optical difference spectrum of the electron acceptor Ao in photosystem I
- Picosecond spectroscopy of photosystem I reaction centers
- Absorption studies of primary reactions in Photosystem I. Yield and rate of formation of the P-700 triplet state
- Primary photochemistry in photosystem-I
- Primary-charge separation and excitation of chlorophyll a in Photosystem II particles from spinach as studied by picosecond absorbance-difference spectroscopy
- Anion radicals of pheophytin and chlorophyll A: their role in the primary charge separations of plant photosynthesis
- A FLASH PHOTOLYSIS STUDY OF INTERMEDIATES IN PHOTOCHEMICAL REACTIONS OF CHLOROPHYLL
- Flash-induced absorption changes in Photosystem I, Radical pair or triplet state formation?
- Optical characterization of Photosystem II electron donors
- Singlet and triplet excited carotenoid and antenna bacteriochlorophyll of the photosynthetic purple bacterium Rhodospirillum rubrum as studied by picosecond absorbance difference spectroscopy
- Primary electron acceptors in plant photosynthesis
- The primary electron acceptor of photosystem. I.
- Electrophoretic behavior of trypsin on starch.
- Photoaccumulation of reduced primary electron acceptors of photosystem I of photosynthesis
- Identification of multiple components in the intermediary electron carrier complex of photosystem I
- Excited states and primary charge separation in the pigment system of the green photosynthetic bacterium Prosthecochloris aestuarii as studied by picosecond absorbance difference spectroscopy
- Excitation energy transfer, trapping and annihilation in photosynthetic systems
Cited by
- Excitation dynamics in Photosystem I from Chlamydomonas reinhardtii. Comparative studies of isolated complexes and whole cells.
- Seasonal variations in photosystem I compared with photosystem II of three alpine evergreen broad-leaf tree species.
- Functional analysis of photosystem I complex by site-directed mutagenesis
- Determination of the quenching efficiency of the oxidized primary donor of Photosystem I, P700+: Implications for the trapping mechanism
- Retardation of photo-induced changes in Photosystem I submembrane particles by glycinebetaine and sucrose
- The Biophysics of Photosynthesis
- Studying the diurnal and seasonal acclimation of photosystem Ii using chlorophyll-a fluorescence
- Energy transfer and charge separation kinetics in photosystem I: Part 1: Picosecond transient absorption and fluorescence study of cyanobacterial photosystem I particles.
- Directionality of electron transfer in cyanobacterial photosystem I at 298 and 77 K
- Changes in P-700 Oxidation during the Early Stages of the Induction of Photosynthesis
- The Steady State Chlorophyll a Fluorescence Exhibits in Vivo an Optimum as a Function of Light Intensity which Reflects the Physiological State of the Plant
- Photoinhibition of photosystem I under high light in the shade-established tropical tree species Psychotria rubra
- Alexander Abramovich Krasnovsky (1913–1993): 100th birth anniversary in Moscow, Russia
- Non-Radiative Dissipation of Absorbed Excitation Energy Within Photosynthetic Apparatus of Higher Plants
- Energy transfer to low energy chlorophyll species prior to trapping by P700 and subsequent electron transfer
- Changes in the photosynthetic activities during several stages of vegetative growth of Spirodela polyrhiza: Effect of chromate
- Electron transfer and arrangement of the redox cofactors in photosystem I
- Identification of electron-transfer reactions involving the acceptor A1 of photosystem I at room temperature
- Characterization of an improved reaction center preparation from the photosynthetic green sulfur bacterium Chlorobium containing the FeS centers FA and FB and a bound cytochrome subunit.
- Primary charge separation in photosystem I: a two-step electrogenic charge separation connected with P700+A0- and P700+A1- formation.
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