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提高c-Si太阳能电池在紫外区域的效率:对用于下移层应用的铕配合物的光物理见解。

Enhancing c-Si Solar Cell Efficiency in the UV Region: Photophysical Insights into the Use of Eu Complexes for Down-Shifting Layer Applications.

作者信息

Vargas Fabian, Nelson Ronald, Espinoza Dario, Brito Ivan, Sánchez-Muñoz Laura, Alemany Pere, Ortiz Sergio, Ferrada Pablo, Mestra Alifhers, Llanos Jaime

机构信息

Departamento de Química, Universidad Católica del Norte, Avda. Angamos 0610, Antofagasta 1270709, Chile.

Departamento de Química, Universidad de Antofagasta, Antofagasta 1240000, Chile.

出版信息

Molecules. 2023 Dec 4;28(23):7924. doi: 10.3390/molecules28237924.

Abstract

[Eu(DPIQC)] (where DPIQC = 3-(diphenyl phosphoryl)-1-isoquinolinecarboxylate), a luminescent europium complex with antenna ligands, has been carefully embedded within a polyvinyl butyral (PVB) matrix and the resulting material was used to prepare films used as luminescent down-shifting layers (LDSLs) for crystalline Si-based solar cells. The films were characterized using photoluminescence spectroscopy, atomic force spectroscopy (AFM), UV-Vis spectroscopy, and fluorescence microscopy. The AFM analysis shows films with low surface roughness, while fluorescence microscopy revealed that the Eu complex embedded in PVB assumed a spheroidal configuration, a morphology especially beneficial for optical applications. The so-obtained LDSLs were utilized as energy converters in c-Si solar cells to enhance the utilization of high-energy photons, thereby improving their overall efficiency. The determination of photovoltaic parameters carried out before and after the deposition of the LDSLs on the c-Si cells confirms a positive effect on the efficiency of the cell. The increases from 121.6 mA/cm to 124.9 mA/cm, and the open circuit voltage () is found to be unrelated to the complex concentration in the films. The fill factor () remains constant with the Eu concentration. The EQE curves indicate an enhancement in the performance of the photovoltaic cells within the UV region of the spectrum for all coated devices. Electrochemical impedance spectroscopy (EIS) was also carried out in order to analyze the effect of the Eu complex in the charge transfer process of the devices.

摘要

[铕(DPIQC)](其中DPIQC = 3 - (二苯基磷酰基)-1 - 异喹啉羧酸酯)是一种带有天线配体的发光铕配合物,已被小心地嵌入聚乙烯醇缩丁醛(PVB)基质中,所得材料用于制备用作晶体硅基太阳能电池发光下转换层(LDSL)的薄膜。使用光致发光光谱、原子力光谱(AFM)、紫外 - 可见光谱和荧光显微镜对薄膜进行了表征。AFM分析表明薄膜具有低表面粗糙度,而荧光显微镜显示嵌入PVB中的铕配合物呈现球形构型,这种形态对光学应用特别有利。如此获得的LDSL被用作c - Si太阳能电池中的能量转换器,以提高高能光子的利用率,从而提高其整体效率。在c - Si电池上沉积LDSL之前和之后进行的光伏参数测定证实了对电池效率的积极影响。电流密度从121.6 mA/cm²增加到124.9 mA/cm²,并且发现开路电压(Voc)与薄膜中的配合物浓度无关。填充因子(FF)随铕浓度保持恒定。EQE曲线表明,对于所有涂覆的器件,在光谱的紫外区域内光伏电池的性能有所增强。还进行了电化学阻抗谱(EIS)分析,以研究铕配合物在器件电荷转移过程中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7189/10708391/404998b451cf/molecules-28-07924-sch001.jpg

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