Understanding the Interfaces between Triple-Cation Perovskite and Electron or Hole Transporting Material
Authors:
- Katarzyna Pydzińska-Białek,
- Viktoriia Drushliak,
- Luis Emerson Coy Romero,
- Karol Załęski,
- Jessica Flach,
- Jesus Idígoras,
- Lidia Contreras-Bernal,
- Anders Hagfeldt,
- Juan A. Anta,
- Marcin Ziółek
Abstract
The properties of efficient solar cells fabricated with triple-cation perovskite placed between a mesoporous titania layer and a spiro-OMeTAD layer are studied by using devices either prepared under water-free drybox conditions or fabricated under ambient room humidity. The morphological studies indicate that the content of unreacted PbI2 phase in the perovskite structure is much higher near the interface with titania than near the interface with spiro-OMeTAD. The stationary emission spectra and transient bleach peaks of perovskites show additional long-wavelength features close to the titania side. Time-resolved techniques ranging from femtoseconds to seconds reveal further differences in charge dynamics at both interfaces. The population decay is significantly faster at the titania side than at the spiro-OMeTAD side for the cells prepared under ambient conditions. An increased hole injection rate correlates with higher photocurrent seen in the devices prepared under drybox conditions. The charge recombination loss on the millisecond time scale is found to be slower at the interface with titania than at the interface with spiro-OMeTAD. The ideality factor of the cells is found to increase with increasing DMSO content in the precursor solution, indicating a change in recombination mechanism from bulk to surface recombination. We also found that the charge dynamics are not uniform within the whole perovskite layer. This feature has significant implications for understanding the operation and optimizing the performance of solar devices based on mixed cation perovskites.
- Record ID
- UAMd8176ca552fd4f92acefb882af67ff70
- Author
- Journal series
- ACS Applied Materials & Interfaces, ISSN 1944-8244, e-ISSN 1944-8252
- Issue year
- 2020
- Vol
- 12
- No
- 27
- Pages
- 30399-30410
- Keywords in English
- impedance spectroscopy; perovskite solar cells; perovskite−HTM interface; perovskite−TiO2 interface; triple-cation perovskite; ultrafast time-resolved optical spectroscopy
- ASJC Classification
- DOI
- DOI:10.1021/acsami.0c07095 Opening in a new tab
- URL
- https://www.scopus.com/inward/record.uri?eid=2-s2.0-85088209735&doi=10.1021%2facsami.0c07095&partnerID=40&md5=9ff9f207cc826ad9346b8e1045675af6 Opening in a new tab
- Language
- (en) English
- File
-
- File: 1
- acsami.0c07095.pdf
-
- Score (nominal)
- 200
- Score source
- journalList
- Score
- = 200.0, 18-05-2022, ArticleFromJournal
- Publication indicators
- = 2; = 1; = 1; : 2018 = 1.539; : 2019 (2 years) = 8.758 - 2019 (5 years) =8.901
- Citation count
- 1
- Uniform Resource Identifier
- https://researchportal.amu.edu.pl/info/article/UAMd8176ca552fd4f92acefb882af67ff70/
- URN
urn:amu-prod:UAMd8176ca552fd4f92acefb882af67ff70
* presented citation count is obtained through Internet information analysis and it is close to the number calculated by the Publish or PerishOpening in a new tab system.