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钙钛矿太阳能电池中的新型材料:效率、稳定性及未来展望

Novel Materials in Perovskite Solar Cells: Efficiency, Stability, and Future Perspectives.

作者信息

Bist Anup, Pant Bishweshwar, Ojha Gunendra Prasad, Acharya Jiwan, Park Mira, Saud Prem Singh

机构信息

Department of Chemistry, Kailali Multiple Campus, Farwestern University, Mahendranagar 10400, Nepal.

Carbon Composite Energy Nanomaterials Research Center, Woosuk University, Wanju 55338, Republic of Korea.

出版信息

Nanomaterials (Basel). 2023 May 24;13(11):1724. doi: 10.3390/nano13111724.

Abstract

Solar energy is regarded as the finest clean and green energy generation method to replace fossil fuel-based energy and repair environmental harm. The more expensive manufacturing processes and procedures required to extract the silicon utilized in silicon solar cells may limit their production and general use. To overcome the barriers of silicon, a new energy-harvesting solar cell called perovskite has been gaining widespread attention around the world. The perovskites are scalable, flexible, cost-efficient, environmentally benign, and easy to fabricate. Through this review, readers may obtain an idea about the different generations of solar cells and their comparative advantages and disadvantages, working mechanisms, energy alignment of the various materials, and stability achieved by applying variable temperature, passivation, and deposition methods. Furthermore, it also provides information on novel materials such as carbonaceous, polymeric, and nanomaterials that have been employed in perovskite solar in terms of the different ratios of doping and composite and their optical, electrical, plasmonic, morphological, and crystallinity properties in terms of comparative solar parameters. In addition, information on current trends and future commercialization possibilities of perovskite solar have been briefly discussed based on reported data by other researchers.

摘要

太阳能被视为取代基于化石燃料的能源并修复环境损害的最佳清洁和绿色能源生产方式。用于提取硅太阳能电池中使用的硅所需的更昂贵制造工艺和程序可能会限制其生产和广泛使用。为了克服硅的障碍,一种名为钙钛矿的新型能量收集太阳能电池在全球范围内受到广泛关注。钙钛矿具有可扩展、灵活、成本效益高、环境友好且易于制造的特点。通过本综述,读者可以了解不同代太阳能电池及其相对优缺点、工作机制、各种材料的能量排列以及通过应用可变温度、钝化和沉积方法实现的稳定性。此外,它还提供了关于新型材料的信息,如碳质、聚合物和纳米材料,这些材料已被用于钙钛矿太阳能电池中,涉及不同的掺杂和复合比例,以及它们在比较太阳能参数方面的光学、电学、等离子体、形态和结晶性能。此外,还根据其他研究人员报告的数据简要讨论了钙钛矿太阳能电池的当前趋势和未来商业化可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7da/10254732/a979d876cf2f/nanomaterials-13-01724-g001.jpg

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