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自聚合材料輔助提升鈣鈦礦太陽能電池性能的研究進展

Research Progress on Self-polymerization Materials to Assist in Improving the Performance of Perovskite Solar Cells

  • 摘要: 鈣鈦礦太陽能電池已經成為最具潛力的光伏產業之一,各種新型鈍化材料的應用層出不窮,其中自聚合功能材料已經在鈣鈦礦太陽能電池的性能優化方面展現出了優秀能力。通過在鈣鈦礦太陽能電池中添加自聚合功能材料可以調控鈣鈦礦結晶過程、鈍化表面缺陷及形成疏水層等,顯著提高器件的光電轉換效率和環境穩定性。本文根據自聚合材料在鈣鈦礦太陽能電池中的應用,系統的綜述了自聚合材料的種類、作用機制及研究進展,重點探討其在缺陷鈍化、界面優化及穩定性提升中的關鍵作用。當前研究仍需解決自聚合材料規模化制備、長期穩定性及復雜環境適應性等挑戰,自聚合材料的持續創新有望加速鈣鈦礦太陽能電池商業化進程,推動光伏技術發展。

     

    Abstract: Perovskite solar cells are now among the most promising photovoltaic industries. Novel passivation materials are emerging, and self-polymerizing functional materials have proven highly effective in perovskite solar cell optimization. Adding these materials can regulate perovskite crystallization, passivate surface defects, and form hydrophobic layers, greatly boosting device efficiency and environmental stability. This paper offers a systematic review of self-polymerizing materials, focusing on their types, mechanisms, and research progress in perovskite solar cells. It emphasizes their key roles in defect passivation, interface engineering, and stability enhancement. However, challenges remain in the scaled preparation, long - term stability, and adaptability of these materials to complex conditions. Continued innovation in self-polymerizing materials is expected to fast - track the commercialization of perovskite solar cells and propel photovoltaic technology forward.

     

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