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An alternative efficient redox couple for the dye-sensitized solar cell system

机译:染料敏化太阳能电池系统的另一种高效氧化还原对

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摘要

A series of new cobalt complexes [Co(LLL)(2)X-2] were synthesized and evaluated as redox mediators for dye-sensitized nanocrystalline TiO2 Solar cells. The structure of the ligand and the nature of the counterions were found to influence the photovoltaic performance. The one-electron-transfer redox mediator [Co(dbbiP)(2)](ClO4)(2) (dbbip = 2,6- bis(1'-butylbenzimidazol-2'-yl)pyridine) performed best among the compounds investigated. Photovoltaic cells incorporating this redox mediator yielded incident photon-to-current conversion efficiencies (IPCE) of up to 80%. The overall yield of light-to-electric power conversion reached 8 % under simulated AM1.5 sunlight at 100 W m(-2) intensity and more than 4 % at 1000 W m(-2). Photoelectrodes coated with a 2 mum thick nanoporous layer and a 4 mum thick light-scattering layer, sensitized with a hydrophobic ruthenium dye, gave the best results. [References: 47]
机译:合成了一系列新的钴配合物[Co(LLL)(2)X-2],并作为染料敏化纳米晶TiO2太阳能电池的氧化还原介体进行了评估。发现配体的结构和抗衡离子的性质影响光伏性能。在研究的化合物中,单电子转移氧化还原介体[Co(dbbiP)(2)](ClO4)(2)(dbbip = 2,6-双(1'-丁基苯并咪唑-2'-基)吡啶)表现最佳。装有这种氧化还原介体的光伏电池产生的入射光子-电流转换效率(IPCE)高达80%。在模拟AM1.5阳光下,在100 W m(-2)的强度下,光电转换的总产率达到8%,而在1000 W m(-2)的情况下,光转换为电的总产率超过4%。用疏水钌染料敏化的涂有2μm厚的纳米孔层和4μm厚的光散射层的光电极产生了最佳结果。 [参考:47]

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