Improved performance of dye-sensitized solar cells by tuning the properties of ruthenium complexes containing conjugated bipyridine ligands

被引:1
|
作者
Nguyen H.M. [1 ]
Nguyen D.N. [1 ]
Kim N. [2 ]
机构
[1] Polymer Division, Institute of Chemistry, Vietnam Academy of Science and Technology, Cau Giay District, Hanoi
[2] Organic Photonic and Electronic Materials Laboratory, Department of Chemistry, Hanyang University, Seongdong-gu, Seoul, 133-791
关键词
Conjugated ligand; Dye-sensitized solar cell; Heteroleptic ruthenium complex; HOMO-LUMO energy level; Molar extinction coefficient;
D O I
10.1088/2043-6254/1/2/025001
中图分类号
学科分类号
摘要
Three heteroleptic ruthenium complexes cis-[Ru(H2dcbpy)(L)(NCS)2], where H2dcbpy is 4,40-dicarboxy-2,20-bipyridine and L is 4-(4-(N,N-di-(p-anisyl)amino) styryl)- 40-methyl-2,20-bipyridine (Dye-1), 4-(4-(N,N-di-(p-hexyloxyphenyl) amino) styryl)-40-methyl-2,20-bipyridine (Dye-2) or 4-(5-(N,N-di-(p- hexyloxyphenyl)- amino)-thiophene-2-yl-ethenyl)-40-methyl-2,20-bipyridine (Dye-3) have been synthesized and characterized. The influence of differently conjugated bipyridine ligands on these complexes was studied using UV-Vis spectroscopy and cyclic voltammetry. These heteroleptic complexes show appreciably broad absorption ranges and quite high extinction coefficients. These new dyes were used as photosensitizers in nanocrystalline TiO2 dye-sensitized solar cells. It was found that the difference in light-harvesting property between Dye-1, Dye-2 and Dye-3 is associated mainly with molar extinction coefficients and alignment of the HOMO-LUMO energy levels. The power conversion efficiencies of solar cells based on Dye-1 and Dye-2 are 4.21% and 4.41%, while Dye-3 delivered a lower efficiency of 2.88% under the same device fabrication and measurement conditions. © 2010 Vietnam Academy of Science & Technology.
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