Over the years numerous mixes of chemical compounds have been tried in the electrolytes of dye-sensitized solar cells in efforts to improve their efficiency. How these chemicals interact with each other and the photoelectrode has received surprisingly little attention. Here we report results from a systematic study of two I–/I3– electrolytes and their additives using infrared and Raman spectroscopy together with quantum chemical calculations. In the LiI electrolyte competing interactions between lithium cation and the solvent MPN and the additives TBP, NMBI, and GuSCN were identified. These interactions could inhibit the interaction of lithium ions with the TiO2 surface. It was found that under Raman excitation of PMII solution in contact w...
The effect of the addition of benzimidazole derivatives (xBI) to new-generation organic dye-sensitiz...
The work presented in this thesis investigates a series of materials that have utility in dye-sensit...
International audienceWe report an in-depth study focusing on the stability of a benchmark electroly...
Over the years numerous mixes of chemical compounds have been tried in the electrolytes of dye-sensi...
The interactions between the molecular constituents in dye-sensitized solar cells were studied with ...
Resonance Raman scattering studies of a complete dye-sensitized solar cell (DSC) including iodine an...
We investigate the influence of electrolyte cations such as lithium and dimethylimidazolium on the s...
International audienceBy optimizing the lithium concentration in an electrolyte to 50 mmol L(-1 )and...
Nanoenabled photovoltaics consist of a family of relatedapproaches to make solar cells that use nano...
Energy from the sun can be converted to low cost electricity using dye-sensitized solar cells (DSCs)...
Aqueous electrolytes represent the new frontier of dye-sensitized solar cells (DSSCs), as they guara...
The efficiency of dye-sensitized nanocryst. solar cells contg. ionic liqs., composed of org. sulfoni...
Degradation of N719 dye on TiO2 electrodes in dye-sensitive solar cells with high temperatures up to...
Lithium ions are known for their potent function in modulating the energy alignment at the oxide sem...
The electron injection dynamics of dye-sensitized TiO2-based solar cells have been investigated to d...
The effect of the addition of benzimidazole derivatives (xBI) to new-generation organic dye-sensitiz...
The work presented in this thesis investigates a series of materials that have utility in dye-sensit...
International audienceWe report an in-depth study focusing on the stability of a benchmark electroly...
Over the years numerous mixes of chemical compounds have been tried in the electrolytes of dye-sensi...
The interactions between the molecular constituents in dye-sensitized solar cells were studied with ...
Resonance Raman scattering studies of a complete dye-sensitized solar cell (DSC) including iodine an...
We investigate the influence of electrolyte cations such as lithium and dimethylimidazolium on the s...
International audienceBy optimizing the lithium concentration in an electrolyte to 50 mmol L(-1 )and...
Nanoenabled photovoltaics consist of a family of relatedapproaches to make solar cells that use nano...
Energy from the sun can be converted to low cost electricity using dye-sensitized solar cells (DSCs)...
Aqueous electrolytes represent the new frontier of dye-sensitized solar cells (DSSCs), as they guara...
The efficiency of dye-sensitized nanocryst. solar cells contg. ionic liqs., composed of org. sulfoni...
Degradation of N719 dye on TiO2 electrodes in dye-sensitive solar cells with high temperatures up to...
Lithium ions are known for their potent function in modulating the energy alignment at the oxide sem...
The electron injection dynamics of dye-sensitized TiO2-based solar cells have been investigated to d...
The effect of the addition of benzimidazole derivatives (xBI) to new-generation organic dye-sensitiz...
The work presented in this thesis investigates a series of materials that have utility in dye-sensit...
International audienceWe report an in-depth study focusing on the stability of a benchmark electroly...