We report on the fabrication of dye-sensitized solar cells with a TiO2 buffer layer between the transparent conductive oxide substrate and the mesoporous TiO2 film, in order to improve the photovoltaic conversion efficiency of the device. The buffer layer was fabricated by pulsed laser deposition whereas the mesoporous film by the doctor blade method, using TiO2 paste obtained by the sol–gel technique. The buffer layer was deposited in either oxygen (10 Pa and 50 Pa) or argon (10 Pa and 50 Pa) onto transparent conducting oxide glass kept at room temperature. The cross-section scanning electron microscopy image showed differences in layer morphology and thickness, depending on the deposition conditions. Transmission electron microscopy...
The TiO2 compact layers produced by the electrochemical deposition method were employed as blocking ...
Low temperature processing of dye-sensitized solar cells (DSC) is crucial to enable commercializatio...
Dye-sensitized solar cells offer an economically reliable and suitable alternative in moderating the...
A TiO<sub>2</sub> barrier layer is critical in enhancing the performance of dye-sensitized solar cel...
Techniques of TiO2 film fabrication for dye-sensitized solar cells having a conversion efficiency of...
Novel approaches for the fabrication of dye-sensitized solar cells (DSCs) are reported in which all ...
This study explored and described deposition of titanium oxide thin films as blocking layers in dye-...
Recently emerging efficiency records of Dye-Sensitized Solar Cells (DSSCs) are achieved by blocking ...
The evolving generations of photovoltaics for a generally cheaper and environmentally-friendly, but ...
A crucial step in Dye Solar Cell (DSC) fabrication is the sintering of the TiO2 layer which needs t...
We have analysed and optimised a laser process for the sintering of the TiO2 layers in dye solar cel...
We have analysed and optimised a laser process for the sintering of the TiO2 layers in dye solar cel...
Space-separate co-sensitization allows a more flexible design of dye sensitizers and promotes the de...
The TiO2 compact layers produced by the electrochemical deposition method were employed as blocking ...
Low temperature processing of dye-sensitized solar cells (DSC) is crucial to enable commercializatio...
Dye-sensitized solar cells offer an economically reliable and suitable alternative in moderating the...
A TiO<sub>2</sub> barrier layer is critical in enhancing the performance of dye-sensitized solar cel...
Techniques of TiO2 film fabrication for dye-sensitized solar cells having a conversion efficiency of...
Novel approaches for the fabrication of dye-sensitized solar cells (DSCs) are reported in which all ...
This study explored and described deposition of titanium oxide thin films as blocking layers in dye-...
Recently emerging efficiency records of Dye-Sensitized Solar Cells (DSSCs) are achieved by blocking ...
The evolving generations of photovoltaics for a generally cheaper and environmentally-friendly, but ...
A crucial step in Dye Solar Cell (DSC) fabrication is the sintering of the TiO2 layer which needs t...
We have analysed and optimised a laser process for the sintering of the TiO2 layers in dye solar cel...
We have analysed and optimised a laser process for the sintering of the TiO2 layers in dye solar cel...
Space-separate co-sensitization allows a more flexible design of dye sensitizers and promotes the de...
The TiO2 compact layers produced by the electrochemical deposition method were employed as blocking ...
Low temperature processing of dye-sensitized solar cells (DSC) is crucial to enable commercializatio...
Dye-sensitized solar cells offer an economically reliable and suitable alternative in moderating the...