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  4. Deconvolution of Light-Induced Ion Migration Phenomena by Statistical Analysis of Cathodoluminescence in Lead Halide-Based Perovskites
 
research article

Deconvolution of Light-Induced Ion Migration Phenomena by Statistical Analysis of Cathodoluminescence in Lead Halide-Based Perovskites

Shirzadi, Erfan  
•
Tappy, Nicolas  
•
Ansari, Fatemeh
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March 3, 2022
Advanced Science

Studying the compositional instability of mixed ion perovskites under light illumination is important to understand the mechanisms underlying their efficiency and stability. However, current techniques are limited in resolution and are unable to deconvolute minor ion migration phenomena. Here, a method that enables ion migration to be studied allowing different segregation mechanisms to be elucidated is described. Statistical analysis is applied to cathodoluminescence data to generate compositional distribution histograms. Using these histograms, two different ion migration phenomena, horizontal ion migration (HIM) and vertical ion migration (VIM), are identified in different perovskite films. It is found that most passivating agents inhibit HIM, but not VIM. However, VIM can be reduced by deposition of imidazolium iodide on the perovskite surface. This method can be used to study perovskite-based devices efficiency and stability by providing molecular level mechanistic understanding of passivation approaches leading to performance improvement of perovskite solar cells via rational design.

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Type
research article
DOI
10.1002/advs.202103729
Web of Science ID

WOS:000763426100001

Author(s)
Shirzadi, Erfan  
Tappy, Nicolas  
Ansari, Fatemeh
Nazeeruddin, Mohammad Khaja  
Hagfeldt, Anders  
Dyson, Paul J.  
Date Issued

2022-03-03

Publisher

WILEY

Published in
Advanced Science
Article Number

2103729

Subjects

Chemistry, Multidisciplinary

•

Nanoscience & Nanotechnology

•

Materials Science, Multidisciplinary

•

Chemistry

•

Science & Technology - Other Topics

•

Materials Science

•

cathodoluminescence

•

ion migrations

•

perovskites

•

surface passivation

•

solar-cells

•

recombination

•

segregation

•

efficiency

•

stability

•

impact

•

trihalide

•

transport

•

insights

•

iodide

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSPM  
GMF  
LCOM  
Available on Infoscience
March 28, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/186609
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