Transparent nickel doped cobalt sulfide was fabricated on a SnO2:F electrode and tested as an efficient electrocatalyst and as an alternative to the expensive platinum counter electrode. In order to investigate how this electrode could affect the electrical characteristics of a dye-sensitized solar cell, we manufactured cells with the same TiO2 photoanode sensitized with dye (N719) and employing the same quasi-solid electrolyte, altering only the counter electrode used. The cells were electrically and electrochemically characterized and it was observed that the ones with the Ni doped CoS2 outperformed the efficiency of the cells with the Pt counter electrode (3.76% and 3.44% respectively). Particularly, the higher efficiency of the cells wi...
We fabricated a highly efficient (with a solar-to-electricity conversion efficiency (eta) of 8.1%) P...
This study employs for the first time surface-nitrided Ni foam as a counter-electrode free of Pt and...
Various metal selenides were directly deposited on conductive glass and evaluated as counter electro...
We proposed a novel application of cobalt sulfide (CoS) in the configuration of transparent thin fil...
In this work a novel preparation method is proposed for the one step synthesis and thin-film deposit...
Yes. Testing 7 different metals as a substrate for a counter electrode in dye sensitized solar cells...
Thin films of cobalt sulfide (CoS) of thickness l < 10m have been employed as anodes of p-type dy...
In this study, a transparent CoS counter electrode (CE) fabricated by potentiodynamic deposition was...
Platinum-free counter electrodes (CE) were developed for use in efficient and cost-effective energy ...
Highly efficient and transparent multicomponent catalysts for Dye Solar Cells (DSCs) were obtained b...
Cheap ferritic stainless steel is applied here as the counter electrode substrate in dye sensitized ...
This study investigates the applicability of a counter electrode with a P-type semiconductor oxide (...
Yes. Testing 7 different metals as a substrate for a counter electrode in dye sensitized solar cells...
A low-cost, sulfur-doped NiO (S–NiO) thin film is electrodeposited on fluorine-doped SnO2 substrate ...
Dye-sensitised solar cells (DSSCs) are one of the emerging photovoltaic technologies, known for low ...
We fabricated a highly efficient (with a solar-to-electricity conversion efficiency (eta) of 8.1%) P...
This study employs for the first time surface-nitrided Ni foam as a counter-electrode free of Pt and...
Various metal selenides were directly deposited on conductive glass and evaluated as counter electro...
We proposed a novel application of cobalt sulfide (CoS) in the configuration of transparent thin fil...
In this work a novel preparation method is proposed for the one step synthesis and thin-film deposit...
Yes. Testing 7 different metals as a substrate for a counter electrode in dye sensitized solar cells...
Thin films of cobalt sulfide (CoS) of thickness l < 10m have been employed as anodes of p-type dy...
In this study, a transparent CoS counter electrode (CE) fabricated by potentiodynamic deposition was...
Platinum-free counter electrodes (CE) were developed for use in efficient and cost-effective energy ...
Highly efficient and transparent multicomponent catalysts for Dye Solar Cells (DSCs) were obtained b...
Cheap ferritic stainless steel is applied here as the counter electrode substrate in dye sensitized ...
This study investigates the applicability of a counter electrode with a P-type semiconductor oxide (...
Yes. Testing 7 different metals as a substrate for a counter electrode in dye sensitized solar cells...
A low-cost, sulfur-doped NiO (S–NiO) thin film is electrodeposited on fluorine-doped SnO2 substrate ...
Dye-sensitised solar cells (DSSCs) are one of the emerging photovoltaic technologies, known for low ...
We fabricated a highly efficient (with a solar-to-electricity conversion efficiency (eta) of 8.1%) P...
This study employs for the first time surface-nitrided Ni foam as a counter-electrode free of Pt and...
Various metal selenides were directly deposited on conductive glass and evaluated as counter electro...