Repository logo

Infoscience

  • English
  • French
Log In
Logo EPFL, École polytechnique fédérale de Lausanne

Infoscience

  • English
  • French
Log In
  1. Home
  2. Academic and Research Output
  3. Journal articles
  4. Understanding and Mitigating the Degradation of Perovskite Solar Cells Based on a Nickel Oxide Hole Transport Material during Damp Heat Testing
 
Loading...
Thumbnail Image
research article

Understanding and Mitigating the Degradation of Perovskite Solar Cells Based on a Nickel Oxide Hole Transport Material during Damp Heat Testing

Dussouillez, Marion  
•
Moon, Soo-Jin
•
Mensi, Mounir  
Show more
May 31, 2023
ACS Applied Materials & Interfaces

The development of stable materials, processable on alarge area,is a prerequisite for perovskite industrialization. Beyond the perovskiteabsorber itself, this should also guide the development of all otherlayers in the solar cell. In this regard, the use of NiO x as a hole transport material (HTM) offers severaladvantages, as it can be deposited with high throughput on large areasand on flat or textured surfaces via sputtering, a well-establishedindustrial method. However, NiO x may triggerthe degradation of perovskite solar cells (PSCs) when exposed to environmentalstressors. Already after 100 h of damp heat stressing, a strong fillfactor (FF) loss appears in conjunction with a characteristic S-shaped J-V curve. By performing a wide range of analysison cells and materials, completed by device simulation, the causeof the degradation is pinpointed and mitigation strategies are proposed.When NiO x is heated in an air-tight environment,its free charge carrier density drops, resulting in a band misalignmentat the NiO x /perovskite interface and inthe formation of a barrier impeding hole extraction. Adding an organiclayer between the NiO x and the perovskiteenables higher performances but not long-term thermal stability, forwhich reducing the NiO x thickness is necessary.

  • Details
  • Metrics
Type
research article
DOI
10.1021/acsami.3c02709
Web of Science ID

WOS:001008327600001

Author(s)
Dussouillez, Marion  
•
Moon, Soo-Jin
•
Mensi, Mounir  
•
Wolff, Christian M.  
•
Liu, Yongpeng  
•
Yum, Jun-Ho  
•
Kamino, Brett A.
•
Walter, Arnaud
•
Sahli, Florent
•
Lauber, Ludovic
Show more
Date Issued

2023-05-31

Publisher

AMER CHEMICAL SOC

Published in
ACS Applied Materials & Interfaces
Volume

15

Issue

23

Start page

27941

End page

27951

Subjects

Nanoscience & Nanotechnology

•

Materials Science, Multidisciplinary

•

Science & Technology - Other Topics

•

Materials Science

•

perovskite solar cell

•

stability

•

damp heatdegradation

•

nio x

•

cobalt oxide

•

efficiency

•

layer

•

stability

•

design

•

metal

•

gap

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LIMNO  
PV-LAB  
Available on Infoscience
July 3, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/198692
Logo EPFL, École polytechnique fédérale de Lausanne
  • Contact
  • infoscience@epfl.ch

  • Follow us on Facebook
  • Follow us on Instagram
  • Follow us on LinkedIn
  • Follow us on X
  • Follow us on Youtube
AccessibilityLegal noticePrivacy policyCookie settingsEnd User AgreementGet helpFeedback

Infoscience is a service managed and provided by the Library and IT Services of EPFL. © EPFL, tous droits réservés