AbstractPhotosynthesis involves the conversion of light into chemical energy through a series of electron transfer reactions within membrane-bound pigment/protein complexes. The Photosystem II (PSII) complex in plants, algae and cyanobacteria catalyse the oxidation of water to molecular O2. The complexity of PSII has thus far limited attempts to chemically replicate its function. Here we introduce a reverse engineering approach to build a simple, light-driven photo-catalyst based on the organization and function of the donor side of the PSII reaction centre. We have used bacterioferritin (BFR) (cytochrome b1) from Escherichia coli as the protein scaffold since it has several, inherently useful design features for engineering light-driven el...
The paper describes a project aiming at constructing functional mimics of the oxygen evolving comple...
The functions of metal complexes are directly linked to the local environment in which they are hous...
The synthesis of Mn-based catalysts to mimic the structural and catalytic properties of the oxygen-e...
Photosynthesis involves the conversion of light into chemical energy through a series of electron tr...
AbstractPhotosynthesis involves the conversion of light into chemical energy through a series of ele...
Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidatio...
AbstractThe photosynthetic reaction centre (RC) is central to the conversion of solar energy into ch...
Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize water. Rec...
<div><p>Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize wa...
A compelling target for the design of electron transfer proteins with novel cofactors is to create a...
Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidatio...
Photosynthesis is the process by which light energy is converted into chemical products, in photoaut...
The paper describes recent advances towards the construction of functional mimics of the oxygen evol...
At the heart of photosystem II is the reaction center, where solar energy is used to separate charge...
The work in thesis aims for artificial photosyntesis, which could and will mimic natural photosynthe...
The paper describes a project aiming at constructing functional mimics of the oxygen evolving comple...
The functions of metal complexes are directly linked to the local environment in which they are hous...
The synthesis of Mn-based catalysts to mimic the structural and catalytic properties of the oxygen-e...
Photosynthesis involves the conversion of light into chemical energy through a series of electron tr...
AbstractPhotosynthesis involves the conversion of light into chemical energy through a series of ele...
Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidatio...
AbstractThe photosynthetic reaction centre (RC) is central to the conversion of solar energy into ch...
Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize water. Rec...
<div><p>Photosystem II (PSII) of photosynthesis has the unique ability to photochemically oxidize wa...
A compelling target for the design of electron transfer proteins with novel cofactors is to create a...
Photosystem II (PSII) is the chlorophyll/protein complex in green plants that catalyzes the oxidatio...
Photosynthesis is the process by which light energy is converted into chemical products, in photoaut...
The paper describes recent advances towards the construction of functional mimics of the oxygen evol...
At the heart of photosystem II is the reaction center, where solar energy is used to separate charge...
The work in thesis aims for artificial photosyntesis, which could and will mimic natural photosynthe...
The paper describes a project aiming at constructing functional mimics of the oxygen evolving comple...
The functions of metal complexes are directly linked to the local environment in which they are hous...
The synthesis of Mn-based catalysts to mimic the structural and catalytic properties of the oxygen-e...