The effect of TiO2 nanoflowers as a compact layer for CdS quantum-dot sensitized solar cells with improved performance.

@article{Rao2015TheEO,
  title={The effect of TiO2 nanoflowers as a compact layer for CdS quantum-dot sensitized solar cells with improved performance.},
  author={S. Laxmi Srinivasa Rao and Ikkurthi Kanaka Durga and Chandu V. V. Muralee Gopi and Chebrolu Venkata Tulasivarma and Soo-Kyoung Kim and Hee-jee Kim},
  journal={Dalton transactions},
  year={2015},
  volume={44 28},
  pages={
          12852-62
        }
}
Currently, TiO2 on a fluorine-doped tin oxide substrate is the most commonly used type of photoelectrode in high-efficiency quantum dot-sensitized solar cells (QDSSCs). The power conversion efficiency (PCE) of TiO2 photoelectrodes is limited because of higher charge recombination and lower QD loading on the TiO2 film. This article describes the effect of a TiO2 compact layer on a TiO2 film to enhance the performance of QDSSCs. TiO2 nanoparticles were coated on an FTO substrate by the doctor… 
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In situ fabrication of a direct Z -scheme photocatalyst by immobilizing CdS quantum dots in the channels of graphene-hybridized and supported mesoporous titanium nanocrystals for high photocatalytic performance under visible light
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References

SHOWING 1-10 OF 37 REFERENCES
Optimization of TiO2 photoanode films for highly efficient quantum dot-sensitized solar cells
As a fundamental part of quantum dot-sensitized solar cells, the composition and configuration of the TiO2 photoanode film plays an important role in photovoltaic performance. In this work, the
CuInS2 quantum dots coated with CdS as high-performance sensitizers for TiO2 electrodes in photoelectrochemical cells
We report on a high-performance photoelectrode consisting of a nanocrystalline TiO2 film co-sensitized with CuInS2 quantum dots (QDs) and CdS layers. In this photoelectrode, solvothermally
A strategy to enhance the efficiency of dye-sensitized solar cells by the highly efficient TiO2/ZnS photoanode.
TLDR
The results in this work suggest that the promising ZnS-coated TiO2 nanoparticles accumulate a large number of photo-injected electrons in the conduction band of the photoanode and the N719 dye lowers the recombinated electrons with the redox electrolyte.
Fluorine Treatment of TiO2 for Enhancing Quantum Dot Sensitized Solar Cell Performance
Surface treatments of TiO2 nanostructure in semiconductor quantum dot sensitized solar cells (QDSCs) aimed to increase the photovoltaic conversion efficiencies of the solar cells are analyzed. A
A strategy to improve the energy conversion efficiency and stability of quantum dot-sensitized solar cells using manganese-doped cadmium sulfide quantum dots.
TLDR
The finding provides an effective method for the fabrication of Mn-doped CdS QDs, which can pave the way to further improve the efficiency of future QDSSCs.
Quantum dot solar cells. harvesting light energy with CdSe nanocrystals molecularly linked to mesoscopic TiO2 films.
TLDR
By using bifunctional surface modifiers (SH-R-COOH), CdSe quantum dots (QDs) have been assembled onto mesoscopic TiO(2) films and exhibits a photon-to-charge carrier generation efficiency of 12%.
Hybrid TiO2–SnO2 Nanotube Arrays for Dye-Sensitized Solar Cells
Tin oxide (SnO2) is a promising wide band gap semiconductor material for dye-sensitized solar cells (DSCs) because of its high bulk electron mobility. Employing vertically ordered 1-D nanostructures
Recombination in quantum dot sensitized solar cells.
TLDR
The strategies for depositing CdSe quantum dots on nanostructured mesoporous TiO(2) electrodes are summarized and the methods that facilitate improvement in the performance and stability of QDSCs are discussed.
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