4.6 Article

The role of surface passivation for efficient and photostable PbS quantum dot solar cells

Journal

NATURE ENERGY
Volume 1, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NENERGY.2016.35

Keywords

-

Funding

  1. Fundacio Privada Cellex
  2. European Community [308997]
  3. Spanish Ministry of Economy and Competitiveness (MINECO)
  4. 'Fondo Europeo de Desarrollo Regional' (FEDER) [MAT2014-56210-R]
  5. Severo Ochoa Programme for Centres of Excellence in RD [SEV-2015-0522]
  6. AGAUR under the SGR grant [2014SGR1548]
  7. ICREA Funding Source: Custom

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For any emerging photovoltaic technology to become commercially relevant, both its power conversion efficiency and photostability are key parameters to be fulfilled. Colloidal quantum dot solar cells are a solution-processed, low-cost technology that has reached an efficiency of about 9% by judiciously controlling the surface of the quantum dots to enable surface passivation and tune energy levels. However, the role of the quantum dot surface on the stability of these solar cells has remained elusive. Here we report on highly efficient and photostable quantum dot solar cells with efficiencies of 9.6% (and independently certificated values of 8.7%). As a result of optimized surface passivation and the suppression of hydroxyl ligands-which are found to be detrimental for both efficiency and photostability-the efficiency remains within 80% of its initial value after 1,000 h of continuous illumination at AM1.5G. Our findings provide insights into the role of the quantum dot surface in both the stability and efficiency of quantum dot solar cells.

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