From Lab to Market: Strategies for Stabilizing and Scaling Perovskite Solar Cells via Printing Technologies
作者:Xin Li, Sikandar Aftab, Manesh A. Yewale, H.H. Hegazy, Erdi Akman, Najaf Rubab, Mahmut Kuş · 发表于:Energy & environment materials · 年份:2025 · DOI:10.1002/eem2.70089 · 被引用次数:10 · 研究领域:Perovskite Materials and Applications、Chalcogenide Semiconductor Thin Films、Conducting polymers and applications
Demonstrating significant achievements in efficiency, perovskite solar cells (PSCs) have acquired unique positions in photovoltaics, offering alternatives to conventional commercial silicon solar cells. While there has been significant progress in enhancing photovoltaic performance, obvious stability problems remain a primary challenge that continues to hinder the commercial viability of PSCs. This present review first comprehensively discusses the main challenges to the commercialization of PSCs, including stability problems, ion migration, toxicity, and complexities in large‐scale fabrication. It then effectively presents universal strategies to overcome the mentioned problems. Moreover, this review article examines various printing techniques that can be used to improve PSCs, emphasizing their benefits like low‐cost components and procedures. Several printing processes are covered in the discussion, such as slot‐die coating, spray coating, inkjet printing, doctor‐blade coating, roll‐to‐roll printing, and screen printing. The potential uses of PSCs for the implementation of greenhouses, building‐integrated photovoltaic systems, and indoor light energy harvesting. These uses highlight the adaptability of PSCs and demonstrate their ability to transform energy production technologies. Additionally, this review highlights the special qualities of perovskite materials that present chances to surpass silicon solar cells' efficiency restrictions and get close to the Shockley‐Queis...