A continuing use of fossil fuels will accelerate global warning and result in severe consequences for the environment and thereby also us. Development of alternative, sustainable and environmentally friendly energy sources is therefore crucial. One approach is to create an artificial photosynthetic system that converts sunshine into fuel (e.g. hydrogen gas) by splitting water molecules. However, in order to split water molecules, a substantial amount of sunshine needs to be harvested. This Thesis focuses on the study of two types of light-harvesting antenna systems; (1) Zn and Cu-porphyrin-appended dendrimers, where all the chromophores are situated on the periphery, and (2) a Os-Ru transition metal complex with six additional organic pyren...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
Inspiration from nature is a dominant force in generating creative solutions to important problems o...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...
Dendrimers are well defined, tree-like macromolecules, with a high degree of order and the possibili...
We report on a study of singlet-singlet annihilation kinetics in a series of Zn(II)-porphyrin-append...
Light-harvesting and intramolecular energy funneling are fundamental processes in natural photosynth...
The research project is focussed on the conversion of solar energy into chemical energy: to reach th...
Multichromophoric dendrimers are increasingly being considered for solar energy systems. To design m...
It is shown how key features of natural photosynthesis can be emulated in novel materials based on p...
We report a study of the electronic energy-transfer dynamics within the transition-metal polypyridin...
© 2015 American Chemical Society. Solar energy conversion starts with the harvest of light, and its ...
The project completed at the Wichita State University Department of Chemistry. Presented at the 7th ...
The combination of efficiency, reliability, and ubiquity of biological systems continues to inspire ...
The world’s energy requirements are always increasing, but sunlight provides more than sufficient en...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
Inspiration from nature is a dominant force in generating creative solutions to important problems o...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...
Dendrimers are well defined, tree-like macromolecules, with a high degree of order and the possibili...
We report on a study of singlet-singlet annihilation kinetics in a series of Zn(II)-porphyrin-append...
Light-harvesting and intramolecular energy funneling are fundamental processes in natural photosynth...
The research project is focussed on the conversion of solar energy into chemical energy: to reach th...
Multichromophoric dendrimers are increasingly being considered for solar energy systems. To design m...
It is shown how key features of natural photosynthesis can be emulated in novel materials based on p...
We report a study of the electronic energy-transfer dynamics within the transition-metal polypyridin...
© 2015 American Chemical Society. Solar energy conversion starts with the harvest of light, and its ...
The project completed at the Wichita State University Department of Chemistry. Presented at the 7th ...
The combination of efficiency, reliability, and ubiquity of biological systems continues to inspire ...
The world’s energy requirements are always increasing, but sunlight provides more than sufficient en...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
Inspiration from nature is a dominant force in generating creative solutions to important problems o...