We report on a study of singlet-singlet annihilation kinetics in a series of Zn(II)-porphyrin-appended dendrimers, where the energy transfer efficiency is significantly improved by extending the molecular chain that connects the light-harvesting chromophores to the dendrimeric backbone with one additional carbon. For the largest dendrimer having 64 Zn(II)-porphyrins, only 10% of the excitation intensity is needed in order to observe the same extent of annihilation in the dendrimers with the additional carbon in the connecting chain as compared to those without. Complete annihilation, until only one chromophore remains excited, now occurs within subunits of seven chromophores, when half of the chromophores are excited. The improvement of the...
Femtosecond fluorescence anisotropy measurements for a variety of cyclic porphyrin arrays such as Zn...
Time resolved fluorescence spectroscopy was carried out on porphyrin-based artificial light harvesti...
Click on the DOI link below to access the article (may not be free).Efficient electronic energy tran...
Solvent induced optimization of energy transfer properties in a series of Zn(II)-porphyrin-appended ...
In this article, we explore energy transfer processes within a series of Zn-porphyrin-appended dendr...
A continuing use of fossil fuels will accelerate global warning and result in severe consequences fo...
The energy transfer within a series of Zn-porphyrin appended dendrimers was studied by means of time...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...
International audienceThe design of porphyrin-based dendrimers featuring conjugated fluorenyl dendro...
A series of dendritic multiporphyrin arrays (<b>P</b><sub><b>Zn</b></sub><b>Tz</b>-<i>n</i><b>P</b><...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
International audienceIn the continuation of our sustained interest for porphyrin-based dendrimers a...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
[[abstract]]The first and second generation of zinc porphyrin core dendrimers (3 and 4) with triaryl...
This thesis concerns electron transfer reactions from different excited states in porphyrins, and th...
Femtosecond fluorescence anisotropy measurements for a variety of cyclic porphyrin arrays such as Zn...
Time resolved fluorescence spectroscopy was carried out on porphyrin-based artificial light harvesti...
Click on the DOI link below to access the article (may not be free).Efficient electronic energy tran...
Solvent induced optimization of energy transfer properties in a series of Zn(II)-porphyrin-appended ...
In this article, we explore energy transfer processes within a series of Zn-porphyrin-appended dendr...
A continuing use of fossil fuels will accelerate global warning and result in severe consequences fo...
The energy transfer within a series of Zn-porphyrin appended dendrimers was studied by means of time...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...
International audienceThe design of porphyrin-based dendrimers featuring conjugated fluorenyl dendro...
A series of dendritic multiporphyrin arrays (<b>P</b><sub><b>Zn</b></sub><b>Tz</b>-<i>n</i><b>P</b><...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
International audienceIn the continuation of our sustained interest for porphyrin-based dendrimers a...
The dynamics of electronic energy transfer (EET) for a series of spherical porphyrin arrays based on...
[[abstract]]The first and second generation of zinc porphyrin core dendrimers (3 and 4) with triaryl...
This thesis concerns electron transfer reactions from different excited states in porphyrins, and th...
Femtosecond fluorescence anisotropy measurements for a variety of cyclic porphyrin arrays such as Zn...
Time resolved fluorescence spectroscopy was carried out on porphyrin-based artificial light harvesti...
Click on the DOI link below to access the article (may not be free).Efficient electronic energy tran...