The TiO2 blocking layer in dye-sensitized solar cells is the most difficult component to evaluate at thicknesses below 50 nm, but it is crucial for the power conversion efficiency. Here, the electrode capacitance of TiO2 blocking layers is tested in aqueous [Fe(CN)6]3–/4– and correlated to the performance of photoanodes in devices based on a [Cu(tmby)2]2+/+ electrolyte. The effects of the blocking layer on electronic recombination in the devices are illustrated with transient photovoltage methods and electrochemical impedance analysis. We have thus demonstrated a feasible and facile method to assess TiO2 blocking layers for the fabrication of dye-sensitized solar cells
A TiO<sub>2</sub> barrier layer is critical in enhancing the performance of dye-sensitized solar cel...
In the present research, the effect of ZnO-based blocking layers on the operational features of TiO2...
Electron transfer dynamics in the oxide layers of the working electrodes in both dye-sensitized sola...
The TiO2 blocking layer in dye-sensitized solar cells is the most difficult component to evaluate at...
The introduction of a dense TiO2 layer between the mesoporous TiO2 network and the charge collector ...
The introduction of a dense TiO<sub>2</sub> layer between the mesoporous TiO<sub>2</sub> network and...
Thin compact layers of TiO2 are grown by thermal oxidation of Ti, by spray pyrolysis, by electrochem...
Changes in the composition of the electrolyte are known to affect the parameters that determine the ...
Electrochemical impedance spectroscopy (EIS) has been performed to investigate electronic and ionic ...
The main features of the characteristic impedance spectra of dye-sensitized solar cells are describe...
Nanocrystalline titanium dioxide (TiO2) photoanodes with four different film thicknesses from 5.57μm...
Dye sensitized TiO2 solar cells were assembled using rigid or flexible transparent electrodes (a con...
Thin TiO2 (anatase) films were prepared by reactive DC magnetron sputtering and characterized in det...
We introduce a novel and comprehensive approach for the evaluation and interpretation of electrochem...
A commercial TiO2 powder was deposited on F-doped SnO2 (FTO) glass substrates by a spray coating tec...
A TiO<sub>2</sub> barrier layer is critical in enhancing the performance of dye-sensitized solar cel...
In the present research, the effect of ZnO-based blocking layers on the operational features of TiO2...
Electron transfer dynamics in the oxide layers of the working electrodes in both dye-sensitized sola...
The TiO2 blocking layer in dye-sensitized solar cells is the most difficult component to evaluate at...
The introduction of a dense TiO2 layer between the mesoporous TiO2 network and the charge collector ...
The introduction of a dense TiO<sub>2</sub> layer between the mesoporous TiO<sub>2</sub> network and...
Thin compact layers of TiO2 are grown by thermal oxidation of Ti, by spray pyrolysis, by electrochem...
Changes in the composition of the electrolyte are known to affect the parameters that determine the ...
Electrochemical impedance spectroscopy (EIS) has been performed to investigate electronic and ionic ...
The main features of the characteristic impedance spectra of dye-sensitized solar cells are describe...
Nanocrystalline titanium dioxide (TiO2) photoanodes with four different film thicknesses from 5.57μm...
Dye sensitized TiO2 solar cells were assembled using rigid or flexible transparent electrodes (a con...
Thin TiO2 (anatase) films were prepared by reactive DC magnetron sputtering and characterized in det...
We introduce a novel and comprehensive approach for the evaluation and interpretation of electrochem...
A commercial TiO2 powder was deposited on F-doped SnO2 (FTO) glass substrates by a spray coating tec...
A TiO<sub>2</sub> barrier layer is critical in enhancing the performance of dye-sensitized solar cel...
In the present research, the effect of ZnO-based blocking layers on the operational features of TiO2...
Electron transfer dynamics in the oxide layers of the working electrodes in both dye-sensitized sola...