The surprisingly small effect of oxygen on photoelectron transfer in pigmented lipid bilayers is traced to a short lifetime of the excited states. Decreasing the oxygen concentration by greater than 100-fold decreases the half saturating concentration of acceptor by only threefold and has no effect on the maximum photovoltage observed at acceptor saturation. This holds true for both magnesium octaethylporphyrin and chlorophyll with both ferricyanide and methyl viologen as acceptors. Since oxygen quenches excited states at near the encounter limit, the lifetime of reactive state must be short, less than 100 ns. About 100-fold higher concentrations of acceptor are required to quench the fluorescence (in liposomes) than to saturate the photoef...
Recently, the addition of negatively charged liposomes was shown to increase the quantum yield of th...
International audienceThe modification of lipid bilayer permeability is one of the most striking yet...
Photodynamic therapy uses photosensitizers (PS) to kill cancer cells by generating reactive oxygen s...
The surprisingly small effect of oxygen on photoelectron transfer in pigmented lipid bilayers is tra...
A photocurrent produced by planar lipid bilayers containing Mg-octaethylporphyrin in the presence of...
Lipid bilayers containing chlorophyll (Chl) or magnesium octaethylporphyrin (MgOEP) and separating s...
Advances in instrumentation allow electrical measurements across the planar lipid bilayer to be made...
Liposomes incorporating chlorophyll (Chl) have been used as a model system to study various aspects ...
Neutral quinones rapidly equilibrate across the lipid bilayer, hereby rendering the photoeffects see...
The decay kinetics of the photovoltage formed on pulsed illumination of a chlorophyll a- (chl a-) co...
83-93The photosensitizer, zinc-tetraphenyl porphyrin (ZnTPP), encapsulated liposomes incorporating r...
AbstractThe efficiency and selectivity of photosensitized damage to membrane functions may be influe...
The photoformation of magnesium-porphyrin cations (P+) at a single lipid bilayer-water interface can...
Photosystem II is a large protein complex embedded in a phospholipid membrane. Photocatalytic water ...
Although the general mechanisms of lipid oxidation are known, the chemical steps through which photo...
Recently, the addition of negatively charged liposomes was shown to increase the quantum yield of th...
International audienceThe modification of lipid bilayer permeability is one of the most striking yet...
Photodynamic therapy uses photosensitizers (PS) to kill cancer cells by generating reactive oxygen s...
The surprisingly small effect of oxygen on photoelectron transfer in pigmented lipid bilayers is tra...
A photocurrent produced by planar lipid bilayers containing Mg-octaethylporphyrin in the presence of...
Lipid bilayers containing chlorophyll (Chl) or magnesium octaethylporphyrin (MgOEP) and separating s...
Advances in instrumentation allow electrical measurements across the planar lipid bilayer to be made...
Liposomes incorporating chlorophyll (Chl) have been used as a model system to study various aspects ...
Neutral quinones rapidly equilibrate across the lipid bilayer, hereby rendering the photoeffects see...
The decay kinetics of the photovoltage formed on pulsed illumination of a chlorophyll a- (chl a-) co...
83-93The photosensitizer, zinc-tetraphenyl porphyrin (ZnTPP), encapsulated liposomes incorporating r...
AbstractThe efficiency and selectivity of photosensitized damage to membrane functions may be influe...
The photoformation of magnesium-porphyrin cations (P+) at a single lipid bilayer-water interface can...
Photosystem II is a large protein complex embedded in a phospholipid membrane. Photocatalytic water ...
Although the general mechanisms of lipid oxidation are known, the chemical steps through which photo...
Recently, the addition of negatively charged liposomes was shown to increase the quantum yield of th...
International audienceThe modification of lipid bilayer permeability is one of the most striking yet...
Photodynamic therapy uses photosensitizers (PS) to kill cancer cells by generating reactive oxygen s...