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Recent Progresses on Defect Passivation toward Efficient Perovskite Solar Cells

Advanced Energy Materials · 2019 · Vol. 10(13)
Feng GaoYang ZhaoXingwang ZhangJingbi You

Abstract

Abstract The disorderly distribution of defects in the perovskite or at the grain boundaries, surfaces, and interfaces, which seriously affect carrier transport through the formation of nonradiative recombination centers, hinders the further improvement on the power conversion efficiency (PCE) of perovskite solar cells (PSCs). Several defect passivation strategies have been confirmed as an efficient approach for promoting the performance of PSCs. Herein, recent progress in the defect passivation toward efficient perovskite solar cells are summarized, and a classification of common passivation strategies that elaborate the mechanism according to the location of the defects and the type of passivation agent is presented. Finally, this review offers likely prospects for future trends in the development of passivation strategies.

Perovskite Materials and ApplicationsChalcogenide Semiconductor Thin FilmsQuantum Dots Synthesis And PropertiesPassivationPerovskite (structure)Materials scienceGrain boundaryEnergy conversion efficiencyOptoelectronicsEngineering physicsNanotechnologyLayer (electronics)Chemical engineering

Funding

  • National Natural Science Foundation of China
  • Beijing Municipal Science and Technology Commission
  • National Key Research and Development Program of China
Citations
758
FWCI
44.28
field-weighted impact
References
173
Percentile
100%
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