Structural and photophysical investigation of single-source evaporation of CsFAPbI3 and FAPbI3 perovskite thin films

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalpeer-review

1 Scopus Citations
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Author(s)

  • Nadja Klipfel
  • Muhammed P. U. Haris
  • Samrana Kazim
  • Albertus Adrian Sutanto
  • Naoyuki Shibayama
  • And 5 others
  • Hiroyuki Kanda
  • Abdullah M. Asiri
  • Cristina Momblona
  • Shahzada Ahmad
  • Mohammad Khaja Nazeeruddin

Detail(s)

Original languageEnglish
Pages (from-to)10075-10082
Journal / PublicationJournal of Materials Chemistry C
Volume10
Issue number27
Online published14 Jun 2022
Publication statusPublished - 21 Jul 2022
Externally publishedYes

Abstract

Thermal vacuum deposition is a stimulating technique for upscaling perovskite solar cells. However, the operational complexity of multisource vapor deposition (MSVD) and achieving stoichiometric perovskite layers may impede its implementation. The single-source vapor deposition (SSVD) method has recently emerged as an alternative for MSVD due to its inherent functionality and ease of operation. Here, for the first time, we demonstrate a successful SSVD approach for fabricating pure CsFAPbI3 and FAPbI3 thin films from pre-synthesized perovskite powders. We carried out structural and photophysical investigations to optimize the phase purity and shelf-life of the deposited thin films. Furthermore, we probed the perovskite layer compatibility with various underlayers; we noted that MeO-2PACz, an organic underlayer, displayed superiority over other organic underlayers such as Spiro-OMeTAD and TaTm, and the SnO2 metal oxide layer, which might indicate that this method is more suitable for p-i-n solar cell fabrication. Our approach presents a straightforward methodology and avoids the use of multiple thermal sources to deposit CsFAPbI3 and can further ease the vacuum deposition methodology.

Citation Format(s)

Structural and photophysical investigation of single-source evaporation of CsFAPbI3 and FAPbI3 perovskite thin films. / Klipfel, Nadja; Haris, Muhammed P. U.; Kazim, Samrana et al.

In: Journal of Materials Chemistry C, Vol. 10, No. 27, 21.07.2022, p. 10075-10082.

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalpeer-review