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Polymer-Assisted Single-Step Slot-Die Coating of Flexible Perovskite Solar Cells at Mild Temperature from Dimethyl Sulfoxide.

Authors :
Bisconti F
Giuri A
Marra G
Savoini A
Fumo P
Marrazzo R
Zanardi S
Corso G
Po R
Biagini P
Quadrivi E
Suhonen R
Kraft TM
Ylikunnari M
Listorti A
Corcione CE
Colella S
Rizzo A
Source :
ChemPlusChem [Chempluschem] 2021 Oct; Vol. 86 (10), pp. 1442-1450.
Publication Year :
2021

Abstract

The industrialization of perovskite solar cells relies on solving intrinsic-to-material issues. To reach record efficiencies perovskite deposition needs to be finely adjusted by multi-step processes, in a humidity free glove-box environment and by means of hardly scalable techniques often associated with toxic solvents and anti-solvent dripping/bath. Herein, the use of polymeric material is proposed to deposit perovskite layers with easy processability. To the scope, a starch-polymer/perovskite composite is developed to suit slot-die coating technique requirement, allowing the deposition of hybrid halide perovskite material in a single straightforward step without the use of toxic solvents, and in uncontrolled humid environment (RH up to 70 %). The starch-polymer increases the viscosity of the perovskite precursor solutions and delays the perovskite crystallization that results in the formation of perovskite films at mild temperature (60 °C) with good morphology. These innovative inks enables the fabrication of flexible solar cells with p-i-n configuration featured by a power conversion efficiency higher than 3 %. . Overall, this approach can be exploited in the future to massively reduce perovskite manufacturing costs related to keeping the entire fabrication line at high-temperature and under nitrogen or dry conditions.<br /> (© 2021 The Authors. ChemPlusChem published by Wiley-VCH GmbH.)

Details

Language :
English
ISSN :
2192-6506
Volume :
86
Issue :
10
Database :
MEDLINE
Journal :
ChemPlusChem
Publication Type :
Academic Journal
Accession number :
34648239
Full Text :
https://doi.org/10.1002/cplu.202100251