Flexible Perovskite Solar Cells on Polycarbonate Film Substrates

Author:

Skafi Zeynab1ORCID,Castriotta Luigi Angelo1ORCID,Taheri Babak2ORCID,Matteocci Fabio1ORCID,Fahland Matthias3,Jafarzadeh Farshad1,Joseph Ebin1ORCID,Chakraborty Abhisek1ORCID,Singh Vaibhav1ORCID,Mottaghitalab Vahid4ORCID,Mivehi Leila5ORCID,Brunetti Francesca1ORCID,Sorbello Luca6ORCID,Di Carlo Aldo17ORCID,Brown Thomas M.1ORCID

Affiliation:

1. Department of Electronic Engineering CHOSE (Centre for Hybrid and Organic Solar Energy) Tor Vergata University of Rome Via del Politecnico 1 Rome 00133 Italy

2. ENEA Frascati Research Centre Superconductivity Section, Via Enrico Fermi, 45 Frascati 00044 Italy

3. Department R2R‐Technologies Fraunhofer FEP Winterbergstraße 28 01277 Dresden Germany

4. Department of Chemical Engineering Faculty of Engineering University of Guilan Persian Gulf Highway Gilan 41996‐13776 Iran

5. Department of Textile Engineering Faculty of Engineering University of Guilan Persian Gulf Highway Gilan 41996‐13776 Iran

6. Halocell Europe Viale Castro Pretorio 122 Rome 00185 Italy

7. Istituto di Struttura della Materia (ISM‐CNR) Via del Fosso del Cavaliere 100 Rome 00133 Italy

Abstract

AbstractThe market for polycarbonate (PC), a versatile material, is growing rapidly. Despite its widespread use in many applications, poor chemical resistance and roughness have hindered its adoption as a substrate in solar cell technologies. Here, the first‐ever perovskite solar cell (PSC) is demonstrated on PC films. A solution‐processed planarizing layer is developed using a commercial ambient‐curable refractory resin through blade coating which decreased film roughness from 1.46 µm to 23 nm, lowered water vapor transmission rates (WVTR) by a half, and significantly improved solvent resistance enabling deposition of precursor inks. The PSCs are fabricated on the planarized PC substrate, with a customized ITO electrode with an average visible transparency of 78%, sheet resistance of 25 Ω/sq, and a safe bending radius of 20 mm. The power conversion efficiency (PCE) reached 13.0%. The unencapsulated PSCs retained 80% of initial PCE after 1776 h upon ISOS‐D‐1 shelf‐life tests. These results open new pathways for integrating solar cells in many products made from PC materials, such as ID cards, smart cards, windows, skylights, buildings, and product packaging, as well as introducing a new solution for planarization and solvent barrier that can be used for other types of optoelectronic devices (LEDs, transistors, etc.) and substrates.

Publisher

Wiley

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