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用于晶体硅太阳能电池的非晶氮化碳双功能减反射涂层。

Amorphous carbon nitride dual-function anti-reflection coating for crystalline silicon solar cells.

作者信息

Addie Ali J, Ismail Raid A, Mohammed Mudhafar A

机构信息

Center of Advanced Materials, Ministry of Science and Technology, Baghdad, Iraq.

Applied Science Department, University of Technology-Iraq, Baghdad, Iraq.

出版信息

Sci Rep. 2022 Jun 14;12(1):9902. doi: 10.1038/s41598-022-14078-0.

Abstract

Crystalline silicon (c-Si) solar cells have dominated the photovoltaic industry for decades. However, due to high reflectivity and the presence of numerous types of surface contaminants, the solar cell only absorbs a limited amount of the incident solar radiation. To improve the efficiency of the solar cell, anti-reflection and self-cleaning coatings must be applied to the surface. The main objective of this work is to synthesize an amorphous carbon nitride CNx thin film as a novel dual-function anti-reflection coating (ARC) for c-Si solar cells. The CNx film was synthesized by the RF magnetron sputtering technique and characterized by different chemical, structural, and optical analysis techniques. The performance of CNx film was investigated via measuring the reflectance, photoelectric conversion efficiency, and external quantum efficiency. The minimum reflectance was 0.3% at 550 nm wavelength, and the external quantum efficiency achieved was more than 90% within the broad wavelength range. The open circuit voltage and short circuit current density that have been achieved are 578 mV and 33.85 mAcm, respectively. Finally, a photoelectric conversion efficiency of 13.05% was achieved with the coated c-Si solar cell in comparison with 5.52% for the uncoated c-Si solar cell. This study shows that CNx films have promising application potential as an efficient ARC for c-Si solar cells as compared to traditional ARC materials.

摘要

几十年来,晶体硅(c-Si)太阳能电池一直主导着光伏产业。然而,由于高反射率以及存在多种类型的表面污染物,太阳能电池仅吸收有限量的入射太阳辐射。为了提高太阳能电池的效率,必须在其表面涂覆抗反射和自清洁涂层。这项工作的主要目标是合成一种非晶碳氮化物CNx薄膜,作为用于c-Si太阳能电池的新型双功能抗反射涂层(ARC)。通过射频磁控溅射技术合成了CNx薄膜,并采用不同的化学、结构和光学分析技术对其进行了表征。通过测量反射率、光电转换效率和外量子效率来研究CNx薄膜的性能。在550nm波长处的最小反射率为0.3%,在宽波长范围内实现的外量子效率超过90%。已实现的开路电压和短路电流密度分别为578mV和33.85mA/cm²。最后,涂覆后的c-Si太阳能电池实现了13.05%的光电转换效率,而未涂覆的c-Si太阳能电池的光电转换效率为5.52%。这项研究表明,与传统的抗反射涂层材料相比,CNx薄膜作为c-Si太阳能电池的高效抗反射涂层具有广阔的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9269/9197845/38ceb52af3d5/41598_2022_14078_Fig1_HTML.jpg

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