Photosynthetic reaction center proteins (RCs) are the most efficient light energy converter systems in nature. The first steps of the primary charge separation in photosynthesis take place in these proteins. Due to their unique properties, combining RCs with nano-structures promising applications can be predicted in optoelectronic systems. In the present work RCs purified from Rhodobacter sphaeroides purple bacteria were immobilized on multiwalled carbon nanotubes (CNTs). Carboxyl—and amine-functionalised CNTs were used, so different binding procedures, physical sorption and chemical sorption as well, could be applied as immobilization techniques. Light-induced singlet oxygen production was measured in the prepared photoactive biocomposites...
Because of their unique one dimensional structure, large surface area, and electronic properties, si...
Production of singlet molecular oxygen by photosensitisation remains the most common and convenient ...
In this work, single walled carbon nanotubes (SWNTs) have been chemically functionalized at their wa...
Photosynthetic reaction center proteins (RCs) are the most efficient light energy converter systems ...
Nowadays the photoelectric energy transformation is one of the most promising alternative energy sou...
Photosensitizers may convert molecular oxygen into reactive oxygen species (ROS) including, e.g., si...
We have successfully developed an enzyme electrode based on photosynthetic reaction centre (RC) prot...
Promising developments in application of carbon nanotubes (CNTs) have raised concern regarding poten...
To overcome the hydrophobic nature of pristine carbonaceous materials such as carbon nanotubes (CNTs...
A considerable amount of research has been devoted to carbon nanotubes because of their unique elect...
International audienceEnergy transfer mechanisms in noncovalently bound bacteriorhodopsin/single-wal...
The nano dimensions, graphitic surface chemistry and electronic properties of single walled carbon n...
A combination of photosynthetic biocatalysts with high surface area conductive materials mediated by...
The interface between plant organelles and non-biological nanostructures has the potential to impart...
The nano dimensions, graphitic surface chemistry and electronic properties of single walled carbon n...
Because of their unique one dimensional structure, large surface area, and electronic properties, si...
Production of singlet molecular oxygen by photosensitisation remains the most common and convenient ...
In this work, single walled carbon nanotubes (SWNTs) have been chemically functionalized at their wa...
Photosynthetic reaction center proteins (RCs) are the most efficient light energy converter systems ...
Nowadays the photoelectric energy transformation is one of the most promising alternative energy sou...
Photosensitizers may convert molecular oxygen into reactive oxygen species (ROS) including, e.g., si...
We have successfully developed an enzyme electrode based on photosynthetic reaction centre (RC) prot...
Promising developments in application of carbon nanotubes (CNTs) have raised concern regarding poten...
To overcome the hydrophobic nature of pristine carbonaceous materials such as carbon nanotubes (CNTs...
A considerable amount of research has been devoted to carbon nanotubes because of their unique elect...
International audienceEnergy transfer mechanisms in noncovalently bound bacteriorhodopsin/single-wal...
The nano dimensions, graphitic surface chemistry and electronic properties of single walled carbon n...
A combination of photosynthetic biocatalysts with high surface area conductive materials mediated by...
The interface between plant organelles and non-biological nanostructures has the potential to impart...
The nano dimensions, graphitic surface chemistry and electronic properties of single walled carbon n...
Because of their unique one dimensional structure, large surface area, and electronic properties, si...
Production of singlet molecular oxygen by photosensitisation remains the most common and convenient ...
In this work, single walled carbon nanotubes (SWNTs) have been chemically functionalized at their wa...