Machín Abniel, Márquez Francisco
Environmental Catalysis Research Laboratory, Division of Natural Sciences and Technology, Universidad Ana G. Méndez-Cupey Campus, San Juan, PR 00926, USA.
Nanomaterials Research Group, Department of Natural Sciences and Technology, Universidad Ana G. Méndez-Gurabo Campus, Gurabo, PR 00778, USA.
Materials (Basel). 2024 Mar 1;17(5):1165. doi: 10.3390/ma17051165.
The evolution of photovoltaic cells is intrinsically linked to advancements in the materials from which they are fabricated. This review paper provides an in-depth analysis of the latest developments in silicon-based, organic, and perovskite solar cells, which are at the forefront of photovoltaic research. We scrutinize the unique characteristics, advantages, and limitations of each material class, emphasizing their contributions to efficiency, stability, and commercial viability. Silicon-based cells are explored for their enduring relevance and recent innovations in crystalline structures. Organic photovoltaic cells are examined for their flexibility and potential for low-cost production, while perovskites are highlighted for their remarkable efficiency gains and ease of fabrication. The paper also addresses the challenges of material stability, scalability, and environmental impact, offering a balanced perspective on the current state and future potential of these material technologies.
光伏电池的发展与其制造材料的进步有着内在联系。这篇综述文章深入分析了硅基、有机和钙钛矿太阳能电池的最新进展,这些电池处于光伏研究的前沿。我们仔细研究了每类材料的独特特性、优势和局限性,强调它们对效率、稳定性和商业可行性的贡献。探讨了硅基电池持久的相关性以及晶体结构方面的最新创新。研究了有机光伏电池的灵活性和低成本生产潜力,同时突出了钙钛矿电池显著的效率提升和易于制造的特点。本文还讨论了材料稳定性、可扩展性和环境影响等挑战,对这些材料技术的现状和未来潜力提供了一个平衡的观点。