Temperature effect on copper barium thiostannate (CBTS) as hole transport layer of MaSnI3 based perovskite solar cell

Closed

Bintang Cantika, Roer Eka Pawinanto, Lilik Hasanah, Chandra Wulandari, Nurhidayatulloh, Mariya Al-Qibtiya, Budi Mulyati

2025 AIP Conference Proceedings Vol. 3141 Issue 1 Conference paper Cited by 0 SDG 7SDG 17 Quartile

Abstract

Solar cells have become a major focus in the quest for sustainable solutions to global energy needs. However, the use of lead (Pb) in the base material of solar cells raises environmental and human health concerns. Therefore, lead (Pb) replacement material is needed in the development of environmentally friendly Solar Cells by considering its effectiveness. The development of solar cells using lead-free perovskite with methylammonium tin iodide (MaSnI3) has shown promising results due to its high efficiency and stability, making it a potential candidate for commercial use. The goal of this research is to analyze the performance of methylammonium tin iodide (MaSnI3) based perovskite solar cells with copper barium thiostannate (CBTS) as hole transport layer by varying the temperature at the working point with a simple structure. The solar cell structure employed in our investigation consists of a simulated arrangement of Glass/ITO/TiO2/MaSnI3/CBTS/Au. TiO2 serves as the electron transport layer. The measurement parameters were varied by temperature from 280K-980K using the SCAPS 1D simulator. The results showed that increasing temperature effaced to an increase in the efficiency of the solar cells and obtain an power conversion efficiency (PCE) of 27.63% with open circuit voltage (Voc) of 0.97 volts, short-circuit current density (Jsc) of 34.11 mA/cm2, and a Fill Factor (FF) of 82.98%. © 2025 Author(s).

Affiliations

Physics Study Program, Universitas Pendidikan Indonesia, Bandung, Indonesia; Industrial Automation and Robotics Engineering Education Study Program, Universitas Pendidikan Indonesia, Bandung, Indonesia; Doctoral Program of Engineering Physics, Faculty of Industrial Technology, Institut Teknologi Bandung, Bandung, Indonesia; Multimedia Education Study Program, Universitas Pendidikan Indonesia, Cibiru, Indonesia; Electrical Engineering Study Program, Universitas Pendidikan Indonesia, Bandung, Indonesia

Research at a Glance

Premium content — register to unlock

Research at a Glance

Register to unlock

Topics & SDG Alignment

Premium content — register to unlock

Topics & SDG Alignment

Register to unlock

Collaboration

Premium content — register to unlock

Collaboration

Register to unlock

Author Profile (Selected)

Premium content — register to unlock

Author Profile (Selected)

Register to unlock

References Overview

Premium content — register to unlock

References Overview

Register to unlock

Journal & Source

Premium content — register to unlock

Journal & Source

Register to unlock

Metadata & Integrity

Premium content — register to unlock

Metadata & Integrity

Register to unlock