Synthesis and Characterization of Photoanode by Immobilisation of Pyridyl Complexes on ITO for Photo-Conversion System

Anis Kharul Nada Mohd Yusuf, S. Mustafar, M. L. Borines, Etty N. Kusumawati, Y. Juahir, N. M. Ali, Norhayati Hashi
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Abstract

Increasing developments on the application of copper complexes as dyes are due to their dual function in dye-sensitized solar cells (DSSCs) as redox mediators and dye sensitizers. The economical (abundance, low cost) and environmentally friendly properties of copper motivate researchers on the use of copper complexes for replacement of ruthenium-based dyes in solar cells. A novel [Cu(I)(2,9-dmp)(phen-dione)]PF6 (A2) bearing polypyridyl ligands, 1,10- phenanthroline-5,6-dione (phen-dione), 2,9-dimethyl-1,10-phenanthroline (dmp) was prepared by metal complexation reaction. The photofunctionality of A2 as a promising photosensitizer in DSSCs was studied. Interestingly, A2 exhibited two absorption peaks, one is detected in the ultraviolet region due to pi-pi* transition and the other is a metal-to-ligand charge transfer (MLCT) band at 405nm in the visible region. A2 was compared to the same complex with Cu(II) ion as the metal centre which only absorbed light in the ultraviolet region thereby implying limited use of Cu(II) complex in its light harvesting application. The photofunctionality of A2 was studied by employing it as an active material for photoelectric conversion by engaging it with ITO to create a photoanode. Upon light irradiation, an anodic current was observed. In conclusion, introduction of Cu(I), instead of Cu(II), in polypridyls ligands resulted in successful enhancement of photophysical properties of A2, making the photoanode of A2 suitable for light harvesting applications.
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吡啶配合物在ITO上固定化光阳极的合成与表征
铜配合物作为染料在染料敏化太阳能电池(DSSCs)中具有氧化还原介质和染料敏化剂的双重功能,其应用日益广泛。铜的经济(丰富、低成本)和环保特性促使研究人员利用铜配合物取代太阳能电池中的钌基染料。采用金属络合反应制备了新型的[Cu(I)(2,9-dmp)(苯二酮)]PF6 (A2)含多吡啶基配体1,10-菲罗啉-5,6-二酮(苯二酮),2,9-二甲基-1,10-菲罗啉(dmp)。研究了A2在DSSCs中作为光敏剂的光功能。有趣的是,A2表现出两个吸收峰,一个是由于pi-pi*跃迁而在紫外区检测到的,另一个是在405nm的可见光区检测到金属到配体的电荷转移(MLCT)带。将A2与以Cu(II)离子为金属中心的相同配合物进行比较,后者仅在紫外区吸收光,从而表明Cu(II)配合物在其光收集应用中的应用有限。研究了A2的光功能,将其作为光电转换的活性材料,通过与ITO接合形成光阳极。在光照射下,观察到阳极电流。综上所述,在聚苯基配体中引入Cu(I)而不是Cu(II),成功地增强了A2的光物理性质,使A2的光阳极适合于光捕获应用。
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