In Situ Process Monitoring and Multichannel Imaging for Vacuum‐Assisted Growth Control of Inkjet‐Printed and Blade‐Coated Perovskite Thin‐Films

Abstract: Vacuum‐assisted growth (VAG) control is one of the most promising methods for controlling nucleation and crystallization of printed and coated large area lead halide perovskite‐based layers for optoelectronics. To coat or print homogeneous high‐quality perovskite thin‐films at high fabrication yield, real‐time process monitoring of the VAG is pivotal. In response, a 2.1‐megapixel multichannel photoluminescence (PL) and reflection imaging system is developed and employed for the simultaneous spatial in situ analysis of drying, nucleation, and crystal growth during VAG and subsequent thermal annealing of inkjet‐printed and blade‐coated perovskite thin‐films. It is shown that the VAG process, for example, evacuation rate and time, affects the film formation and provide detailed insight into traced PL and reflection transients extracted from sub‐second videos of each channel. Based on correlative analysis between the transients and, for example, perovskite ink composition, wet‐film thickness, or evacuation time, key regions which influence crystal quality, film morphology, and are base for prediction of solar cell performance are identified.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
In Situ Process Monitoring and Multichannel Imaging for Vacuum‐Assisted Growth Control of Inkjet‐Printed and Blade‐Coated Perovskite Thin‐Films ; day:20 ; month:11 ; year:2022 ; extent:15
Advanced Materials Technologies ; (20.11.2022) (gesamt 15)

Urheber
Schackmar, Fabian
Laufer, Felix
Singh, Roja
Farag, Ahmed
Eggers, Helge
Gharibzadeh, Saba
Abdollahi Nejand, Bahram
Lemmer, Uli
Hernandez‐Sosa, Gerardo
Paetzold, Ulrich Wilhelm

DOI
10.1002/admt.202201331
URN
urn:nbn:de:101:1-2022112114042522813373
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
15.08.2025, 07:20 MESZ

Datenpartner

Dieses Objekt wird bereitgestellt von:
Deutsche Nationalbibliothek. Bei Fragen zum Objekt wenden Sie sich bitte an den Datenpartner.

Beteiligte

  • Schackmar, Fabian
  • Laufer, Felix
  • Singh, Roja
  • Farag, Ahmed
  • Eggers, Helge
  • Gharibzadeh, Saba
  • Abdollahi Nejand, Bahram
  • Lemmer, Uli
  • Hernandez‐Sosa, Gerardo
  • Paetzold, Ulrich Wilhelm

Ähnliche Objekte (12)