4.8 Article

Carbon nanotube-based hybrid hole-transporting material and selective contact for high efficiency perovskite solar cells

Journal

ENERGY & ENVIRONMENTAL SCIENCE
Volume 9, Issue 2, Pages 461-466

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5ee03394b

Keywords

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Funding

  1. Swedish Energy Agency
  2. Swedish Research Council
  3. Knut and Alice Wallenberg Foundation
  4. STandUP for Energy program
  5. Saatioiden postdoc -pooli
  6. European Union Seventh Framework Programme (FP7) [604472]
  7. Aalto Energy Efficiency (AEF) program through MOPPI project
  8. TEKES via CARLA project
  9. TEKES via USG project
  10. Academy of Finland via HISCON project
  11. Academy of Finland [276160]

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We demonstrate a high efficiency perovskite solar cell with a hybrid hole-transporting material-counter electrode based on a thin single-walled carbon nanotube (SWCNT) film and a drop-cast 2,2,7,-7-tetrakis(N, N-di-p-methoxyphenylamine)-9,90-spirobifluorene (Spiro-OMeTAD) hole-transporting material (HTM). The average efficiency of the solar cells was 13.6%, with the record cell yielding 15.5% efficiency. The efficiency of the reference solar cells with spin-coated Spiro-OMeTAD hole-transportingmaterials (HTMs) and an evaporated gold counter electrode was 17.7% (record 18.8%), that of the cells with only a SWCNT counter electrode (CE) without additional HTM was 9.1% (record 11%) and that of the cells with gold deposited directly on the perovskite layer was 5% (record 6.3%). Our results show that it is possible to manufacture high efficiency perovskite solar cells with thin film (thickness less than 1 mu m) completely carbon-based HTMCEs using industrially upscalable manufacturing methods, such as press-transferred CEs and drop-cast HTMs.

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