| Abstract Scope |
While perovskite solar cells offer a low-cost, high-efficiency alternative to traditional silicon panels, their widespread adoption is hindered by stability issues, large-scale fabrication challenges, and the use of toxic solvents during production. This research addresses these hurdles by investigating "green" processing alternatives, specifically using anisole as an eco-friendly anti-solvent to replace more hazardous chemicals.
By experimenting with different concentrations of methylammonium chloride (MACl), the study seeks to understand how to better control crystal growth and reduce film defects. Ultimately, this work aims to refine the fundamental working principles of perovskite photovoltaics, enabling more methodical optimizations. The goal is to develop a sustainable, non-toxic fabrication pathway that allows perovskite solar cells to effectively compete with or complement existing silicon technologies in the global energy market. |