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Fe-Cu metastable material as a mesoporous layer for dye-sensitized solar cells

机译:Fe-Cu亚稳材料作为染料敏化太阳能电池的介孔层

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Abstract This study investigates the performance of dye-sensitized solar cells constructed with a Fe-Cu metastable material as the mesoporous layer on which a natural organic dye is applied. The synthesis of the Fe-Cu material is done via a high throughput process that produces nanosized particles from elemental metallic powders. Xanthophyll is singled out as the organic natural dye of choice among other dyes that were extracted, as it exhibited wider spectral absorptivity in terms of wavelength range and magnitude. Two compact solar cells were constructed and tested; one is a reference cell with a TiO 2 working electrode and the other with a Fe-Cu working electrode. The results show a better power conversion efficiency for the Fe-Cu-based solar cell 0.943% compared to 0.638% for the TiO 2 , and the number of carriers in the former is found to be orders of magnitude higher than the latter (10 19 vs. 10 32 , respectively). A thorough optical, electrical, and thermal analysis of the Fe-Cu material is conducted and used to explain the obtained results.
机译:摘要这项研究研究了以Fe-Cu亚稳材料为介孔层的染料敏化太阳能电池的性能,在该介孔层上应用了天然有机染料。 Fe-Cu材料的合成是通过高通量过程完成的,该过程可以从元素金属粉末中产生纳米级颗粒。叶黄素是从其他提取的染料中挑选出来的有机天然染料,因为它在波长范围和强度方面表现出更宽的光谱吸收率。构造并测试了两个紧凑型太阳能电池;一个是带有TiO 2工作电极的参比电池,另一个是带有Fe-Cu工作电极的参比电池。结果表明,Fe-Cu基太阳能电池的功率转换效率为0.943%,而TiO 2为0.638%,并且发现前者的载流子数量比后者高几个数量级(10 19与10 32分别)。对Fe-Cu材料进行了彻底的光学,电学和热学分析,并将其用于解释获得的结果。

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