DMSO-Free Tin Halide Perovskites for Indoor Photovoltaics
Panda, Debendra Prasad; Issaoui, Rabeb; Iqbal, Zafar; Grandhi, G. Krishnamurthy; Ur Rehman, Muhammad Okash; Zu, Fengshuo; Alippi, Paola; Rastgoo, Madineh; Zuo, Shengnan; Luzzi, Enrica; Simmonds, Maxim; Miele, Lorenzo; Sanguigno, Luigi; Li, Meng; Aprea, Paolo; Di Maio, Ernesto; Koch, Norbert; Vivo, Paola; Abate, Antonio (2025-08)
Panda, Debendra Prasad
Issaoui, Rabeb
Iqbal, Zafar
Grandhi, G. Krishnamurthy
Ur Rehman, Muhammad Okash
Zu, Fengshuo
Alippi, Paola
Rastgoo, Madineh
Zuo, Shengnan
Luzzi, Enrica
Simmonds, Maxim
Miele, Lorenzo
Sanguigno, Luigi
Li, Meng
Aprea, Paolo
Di Maio, Ernesto
Koch, Norbert
Vivo, Paola
Abate, Antonio
08 / 2025
ACS Energy Letters
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202508148261
https://urn.fi/URN:NBN:fi:tuni-202508148261
Kuvaus
Peer reviewed
Tiivistelmä
Indoor photovoltaic (IPV) technology has emerged as an effective strategy to sustainably power batteryless Internet of Things (IoT) devices. Though tin perovskite solar cells offer competitive IPV performance, their effectiveness is often compromised by Sn2+ oxidation, particularly when processed with dimethyl sulfoxide (DMSO) solvent. This work explored the IPV performance of DMSO-free tin perovskites FASnI3-xBrx by tuning the halide composition. Notably, X-ray photoelectron spectroscopy confirms no traces of Sn4+, highlighting the critical role of eliminating DMSO. Under 1000 lx indoor illumination, the power conversion efficiency (PCE) increases with Br content, reaching a maximum of 11.1% for FASnI2Br without introducing any reducing agent. Remarkably, after six months of storage, it exhibited an impressive indoor PCE of 11.9%, demonstrating the effectiveness of the DMSO-free processing route for the intrinsic stability of the tin perovskite. These findings provide crucial insights for developing high-performance, lead-free perovskite materials for sustainable energy applications and IoT devices.
Kokoelmat
- TUNICRIS-julkaisut [25334]
