📚 Volume 33, Issue 8
📋 ID: eAZTVsq
Authors
Dr. Elena García-Ruiz, Dr. Takeshi Nakamura, Dr. Amina Al-Farsi
Dr. Elena García-Ruiz: University of Costa Rica, San José, Costa Rica; Dr. Takeshi Nakamura: University of Vermont, Burlington, USA; Dr. Amina Al-Farsi: University of the South Pacific, Suva, Fiji
Keywords
hybrid perovskites
solar cell
synthesis
optoelectronic properties
solution processing
thermal stability
Abstract
The ongoing quest for sustainable energy solutions has intensified research into novel materials for solar energy conversion. Hybrid perovskites have emerged as promising candidates due to their exceptional optoelectronic properties. The objective of this study was to develop and optimize a new synthesis route for hybrid perovskite materials to enhance their effectiveness in solar cell applications. We employed a combination of solution processing techniques and computational modeling to systematically evaluate the impact of different precursor compositions and processing conditions on the structural and electronic properties of the resulting perovskite films. Our findings indicate that the introduction of specific organic cations significantly improves the thermal stability and electron mobility of the films. Furthermore, we observed a 20% increase in power conversion efficiency compared to conventional methods. This research highlights the potential of tailored hybrid perovskite materials in advancing solar cell technology, aligning with global energy sustainability goals. Future work will focus on scaling up the synthesis process and investigating long-term device stability under operational conditions.
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📝 How to Cite
Dr. Elena García-Ruiz, Dr. Takeshi Nakamura, Dr. Amina Al-Farsi (2026).
"Innovative Approaches to Hybrid Perovskite Synthesis for Enhanced Solar Cell Efficiency".
Wulfenia, 33(8).