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Extrinsic ion migration in perovskite solar cells

  • Zhen Li
  • , Chuanxiao Xiao
  • , Ye Yang
  • , Steven P. Harvey
  • , Dong Hoe Kim
  • , Jeffrey A. Christians
  • , Mengjin Yang
  • , Philip Schulz
  • , Sanjini U. Nanayakkara
  • , Chun Sheng Jiang
  • , Joseph M. Luther
  • , Joseph J. Berry
  • , Matthew C. Beard
  • , Mowafak M. Al-Jassim
  • , Kai Zhu
  • National Renewable Energy Laboratory
  • Colorado School of Mines

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

The migration of intrinsic ions (e.g., MA+, Pb2+, I-) in organic-inorganic hybrid perovskites has received significant attention with respect to the critical roles of these ions in the hysteresis and degradation in perovskite solar cells (PSCs). Here, we demonstrate that extrinsic ions (e.g., Li+, H+, Na+), when used in the contact layers in PSCs, can migrate across the perovskite layer and strongly impact PSC operation. In a TiO2/perovskite/spiro-OMeTAD-based PSC, Li+-ion migration from spiro-OMeTAD to the perovskite and TiO2 layer is illustrated by time-of-flight secondary-ion mass spectrometry. The movement of Li+ ions in PSCs plays an important role in modulating the solar cell performance, tuning TiO2 carrier-extraction properties, and affecting hysteresis in PSCs. The influence of Li+-ion migration was investigated using time-resolved photoluminescence, Kelvin probe force microscopy, and external quantum efficiency spectra. Other extrinsic ions such as H+ and Na+ also show a clear impact on the performance and hysteresis in PSCs. Understanding the impacts of extrinsic ions in perovskite-based devices could lead to new material and device designs to further advance perovskite technology for various applications.

langue originaleAnglais
Pages (de - à)1234-1242
Nombre de pages9
journalEnergy and Environmental Science
Volume10
Numéro de publication5
Les DOIs
étatPublié - 1 janv. 2017
Modification externeOui

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