Photovoltaic potential of tin perovskites revealed through layer-by-layer investigation of optoelectronic and charge transport properties
Mahmoud H. Aldamasy, Artem Musiienko, Marin Rusu, Davide Regaldo, Shengnan Zho, Hannes Hampel, Chiara Frasca, Zafar Iqbal, Thomas W. Gries, Guixiang Li, Ece Aktas, Giuseppe Nasti, Meng Li, Jorge Pascual, Noor Titan Putri Hartono, Qiong Wang, Thomas Unold, and Antonio Abate

TL;DR
This study provides a detailed layer-by-layer analysis of FASnI3 tin perovskites, revealing their energy band structure, defect landscape, and charge transport properties to improve photovoltaic performance.
Contribution
It offers the first comprehensive characterization of energy band positions and charge extraction dynamics in tin perovskites, highlighting the need for independent design strategies.
Findings
Precise band diagram of FASnI3 obtained using KP and PYS.
Identification of defect states affecting charge transport.
Demonstration of BCP's role in enhancing electron extraction.
Abstract
Tin perovskites are the most promising environmentally friendly alternative to lead perovskites. Among tin perovskites, FASnI3 (CH4N2SnI3) shows optimum band gap, and easy processability. However, the performance of FASnI3 based solar cells is incomparable to lead perovskites for several reasons, including energy band mismatch between the perovskite absorber film and the charge transporting layers (CTLs) for both types of carriers, i.e., for electrons (ETLs) and holes (HTLs). However, the band diagrams in the literature are inconsistent, and the charge extraction dynamics are poorly understood. In this paper, we study the energy band positions of FASnI3 based perovskites using Kelvin probe (KP) and photoelectron yield spectroscopy (PYS) to provide a precise band diagram of the most used device stack. In addition, we analyze the defects within the current energetic landscape of tin…
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Taxonomy
TopicsPerovskite Materials and Applications · Chalcogenide Semiconductor Thin Films · Conducting polymers and applications
