Hao Yan, Tian Haining, Cong Jiayan, Yang Wenxing, Bora Ilkay, Sun Licheng, Boschloo Gerrit, Hagfeldt Anders
Department of Chemistry-Ångström Laboratory, Center of Molecular Devices, Uppsala University, Box 523, 751 20 Uppsala (Sweden).
Chemphyschem. 2014 Nov 10;15(16):3476-83. doi: 10.1002/cphc.201402474. Epub 2014 Aug 14.
Novel phenoxazine dyes are successfully introduced as sensitizers into dye-sensitized solar cells (DSCs) with cobalt-based electrolyte. In sensitizers with triphenylamine (TPA) groups recombination from electrons in the TiO2 conduction band to the cobalt(III) species is suppressed. The effect of the steric properties of the phenoxazine sensitizers on the overall device performance and on recombination and regeneration processes is compared. Optimized DSCs sensitized with IB2 having two TPA groups in combination with tris(2,2'-bipyridyl) cobalt(II/III) yield efficiencies of 6.3%, similar to that of IB3, which is equipped with mutiple alkoxy groups. TH310 with only one TPA group gives lower efficiency and open circuit voltage, while IB1 without TPA groups performs even worse. These results demonstrate that both TPA groups on the IB2 are needed for an efficient blocking effect. These results reveal a possible new role for TPA units in DSC sensitizer design.
新型吩恶嗪染料成功地作为敏化剂引入到含钴基电解质的染料敏化太阳能电池(DSC)中。在含有三苯胺(TPA)基团的敏化剂中,从TiO₂导带中的电子到钴(III)物种的复合受到抑制。比较了吩恶嗪敏化剂的空间性质对整个器件性能以及复合和再生过程的影响。用具有两个TPA基团的IB2与三(2,2'-联吡啶)钴(II/III)敏化的优化DSC的效率为6.3%,与配备多个烷氧基的IB3相似。仅具有一个TPA基团的TH310效率和开路电压较低,而没有TPA基团的IB1性能更差。这些结果表明,IB2上的两个TPA基团对于有效的阻挡作用都是必需的。这些结果揭示了TPA单元在DSC敏化剂设计中可能的新作用。