Alami Abdul Hai, Faraj Mohammed, Aokal Kamilia, Hawili Abdullah Abu, Tawalbeh Muhammad, Zhang Di
Sustainable and Renewable Energy Engineering Department, University of Sharjah, 27272 Sharjah, UAE.
Center for Advanced Materials Research, Research Institute of Science and Engineering, University of Sharjah, 27272 Sharjah, UAE.
Nanomaterials (Basel). 2020 Apr 19;10(4):784. doi: 10.3390/nano10040784.
This work presents the synthesis and deposition of CuI and FeCu materials on copper substrates for dye-sensitized solar cell applications. FeCu is a metastable alloy of iron and copper powders and possesses good optical and intrinsic magnetic properties. Coupled with copper iodide as tandem layers, the deposition of these two materials was permutated over a pure copper substrate, characterized and then tested within a solar cell. The cell was sensitized with a natural dye extracted from a local desert plant () and operated with an iodine/triiodide electrolyte. The results show that the best layer arrangement was Cu/FeCu/CuI, which gave an efficiency of around 0.763% (compared to 0.196% from reported cells in the literature using a natural sensitizer).
这项工作展示了用于染料敏化太阳能电池应用的碘化亚铜(CuI)和铁铜(FeCu)材料在铜基板上的合成与沉积。FeCu是铁和铜粉的亚稳合金,具有良好的光学和固有磁性。与碘化铜作为串联层相结合,这两种材料在纯铜基板上进行交替沉积,进行表征,然后在太阳能电池中进行测试。该电池用从当地沙漠植物中提取的天然染料进行敏化,并使用碘/三碘化物电解质运行。结果表明,最佳的层排列是Cu/FeCu/CuI,其效率约为0.763%(相比之下,文献中报道的使用天然敏化剂的电池效率为0.196%)。