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  3. Vacuum, Surfaces, and Films
  4. Tin dioxide as an alternative window layer for improving the damp-heat stability of copper indium gallium diselenide solar cells
Details
Category: Vacuum, Surfaces, and Films
By MTech Projects
MTech Projects
06.Apr
Hits: 7

Tin dioxide as an alternative window layer for improving the damp-heat stability of copper indium gallium diselenide solar cells

PROJECT TITLE :

Tin dioxide as an alternative window layer for improving the damp-heat stability of copper indium gallium diselenide solar cells

ABSTRACT:

The authors demonstrate a new copper indium gallium diselenide solar cell architecture by replacing the ZnO in the traditional design with SnO2. The open circuit voltages and efficiencies of the solar cells made with ZnO and SnO2 were the same indicating favorable band alignment. The solar cells made with SnO2 showed significantly better damp-heat stability than those made with ZnO. The efficiency of solar cells made with SnO2 decreased less than 5% after 120 h at 85 °C and 85% relative humidity while the efficiency of solar cells made with ZnO declined by more than 70%.

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  • Fabrication and physical properties of thin TixOy membranes from single crystal TiO2
  • Charge transport and relaxation in hydrogenated barium titanate films and their potential for integrated supercapacitors
  • Correlations of Cu(In, Ga)Se2 imaging with device performance, defects, and microstructural properties
  • Novel light sputter ion pump with neodymium iron boron magnets and the low outgassing body
  • Populations of metastable and resonant argon atoms in radio frequency magnetron plasmas used for deposition of indium-zinc-oxide films
  • Tribological behavior of Ti-Al-Si-C-N hard coatings deposited by hybrid arc-enhanced magnetron sputtering
  • In situ fabrication of blue ceramic coatings on wrought Al Alloy 2024 by plasma electrolytic oxidation
  • Tin dioxide as an alternative window layer for improving the damp-heat stability of copper indium gallium diselenide solar cells
  • On the scaling of rf and dc self-bias voltages with pressure in electronegative capacitively coupled plasmas
Previous article: Correlations of Cu(In, Ga)Se2 imaging with device performance, defects, and microstructural properties Correlations of Cu(In, Ga)Se2 imaging with device performance, defects, and microstructural properties Next article: Fabrication and physical properties of thin TixOy membranes from single crystal TiO2 Fabrication and physical properties of thin TixOy membranes from single crystal TiO2
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