
Perovskite solar cells (PSCs) represent a groundbreaking advancement in renewable energy, offering a pathway to high-efficiency, sustainable energy solutions. This work provides a comprehensive exploration of perovskite materials, innovative device architectures, and advanced modeling techniques. It delves into the synthesis and characterization of perovskites, interface engineering, stability improvements, and fabrication methods for enhancing performance and addresses the scalability challenges and environmental impacts of PSCs, showcasing their potential to drive sustainability in energy systems. The integration of PSCs into hybrid and tandem solar systems, as well as their applications in large-scale photovoltaics, wearable devices, and consumer electronics, is examined in depth. The work serves as a valuable resource for professionals, graduate students and researchers in materials science, renewable energy, and electrical engineering. It highlights the transformative role of PSCs in reducing carbon emissions and achieving global energy goals, making it indispensable for specialists aiming to pioneer sustainable technologies.
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