Klein C, Nazeeruddin Md K, Di Censo D, Liska P, Grätzel Michael
Laboratory for Photonics and Interfaces, Institute of Chemical Sciences and Engineering, Swiss Federal Institute of Technology, CH-1015 Lausanne, Switzerland.
Inorg Chem. 2004 Jul 12;43(14):4216-26. doi: 10.1021/ic049906m.
Amphiphilic ligands 4,4'-bis(1-adamantyl-aminocarbonyl)-2,2'-bipyridine (L(1)), 4,4'-bis[5-[N-[2-(3beta-cholest-5-en-3-ylcarbamate-N-yl)ethyl]aminocarbonyl]]-2,2'-bipyridine (L(2)), 4,4'-bis[5-[N-[2-(3beta-cholest-5-en-3-ylcarbamate-N-yl)propyl]aminocarbonyl]]-2,2'-bipyridine (L(3)), and 4,4'-bis(dodecan-12-ol)-2,2'-bipyridine (L(4)) and their heteroleptic ruthenium(II) complexes of the type [Ru(II)LL(1)(NCS)(2)] (5), [Ru(II)LL(2)(NCS)(2)] (6), [Ru(II)LL(3)(NCS)(2)] (7), and [Ru(II)LL(4)(NCS)(2)] (8) (where L = 4,4'-bis(carboxylic acid)-2,2'-bipyridine) have been synthesized starting from dichloro(p-cymene)ruthenium(II) dimer. All the ligands and the complexes were characterized by analytical, spectroscopic, and electrochemical techniques. The performance of these complexes as charge-transfer photosensitizers in nanocrystalline TiO(2)-based solar cells was studied. When complexes 5-8 anchored onto a 12 + 4 microm thick nanocrystalline TiO(2) films, very efficient sensitization was achieved (85 +/- 5% incident photon-to-current efficiencies in the visible region, using an electrolyte consisting of 0.6 M butylmethylimidazolium iodide, 0.05 M I(2), 0.1 M LiI, and 0.5 M tert-butyl pyridine in 1:1 acetonitrile + valeronitrile). Under standard AM 1.5 sunlight, the complex 8 yielded a short-circuit photocurrent density of 17 +/- 0.5 mA/cm(2), the open-circuit voltage was 720 +/- 50 mV, and the fill factor was 0.72 +/- 0.05, corresponding to an overall conversion efficiency of 8.8 +/- 0.5%.
两亲性配体4,4'-双(1-金刚烷基-氨基甲酰基)-2,2'-联吡啶(L(1))、4,4'-双[5-[N-[2-(3β-胆甾-5-烯-3-基氨基甲酸酯-N-基)乙基]氨基甲酰基]]-2,2'-联吡啶(L(2))、4,4'-双[5-[N-[2-(3β-胆甾-5-烯-3-基氨基甲酸酯-N-基)丙基]氨基甲酰基]]-2,2'-联吡啶(L(3))和4,4'-双(十二烷-12-醇)-2,2'-联吡啶(L(4))及其Ru(II)LL(1)(NCS)(2)、Ru(II)LL(2)(NCS)(2)、Ru(II)LL(3)(NCS)(2)和Ru(II)LL(4)(NCS)(2)型异核钌(II)配合物(其中L = 4,4'-双(羧酸)-2,2'-联吡啶)已由二氯(对异丙基苯)钌(II)二聚体合成。所有配体和配合物均通过分析、光谱和电化学技术进行了表征。研究了这些配合物作为纳米晶TiO₂基太阳能电池中电荷转移光敏剂的性能。当配合物5 - 8锚定在12 + 4微米厚的纳米晶TiO₂薄膜上时,实现了非常有效的敏化(在可见光区域,使用由0.6 M丁基甲基咪唑碘化物、0.05 M I₂、0.1 M LiI和0.5 M叔丁基吡啶组成的1:1乙腈 + 戊腈电解质,入射光子到电流效率为85±5%)。在标准AM 1.5太阳光下,配合物8产生的短路光电流密度为17±0.5 mA/cm²,开路电压为720±50 mV,填充因子为0.72±0.05,对应于8.8±0.5%的总转换效率。