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Dye molecules in electrolytes: new approach for suppression of dye-desorption in dye-sensitized solar cells

机译:电解质中的染料分子:抑制染料敏化太阳能电池中染料解吸的新方法

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摘要

The widespread commercialization of dye-sensitized solar cells remains limited because of the poor long-term stability. We report on the influence of dye-molecules added in liquid electrolyte on long-term stability of dye-sensitized solar cells. Dye-desorption from the TiO2 surface during long-term cycling is one of the decisive factors that degrade photocurrent densities of devices which in turn determine the efficiencies of the devices. For the first time, desorption of dye from the TiO2 surface could be suppressed by controlling thermodynamic equilibrium; by addition of dye molecules in the electrolyte. The dye molecules in the electrolyte can suppress the driving forces for the adsorbed dye molecules to be desorbed from TiO2 nanoparticles. As a result, highly enhanced device stabilities were achieved due to the reduction of dye-desorption although there was a little decrease in the initial efficiencies.
机译:由于差的长期稳定性,染料敏化太阳能电池的广泛商业化仍然受到限制。我们报告在液体电解质中添加的染料分子对染料敏化太阳能电池的长期稳定性的影响。在长期循环过程中,染料从TiO2表面脱附是决定器件光电流密度降低的决定性因素之一,进而决定了器件的效率。第一次,可以通过控制热力学平衡来抑制染料从TiO2表面脱附。通过在电解质中添加染料分子。电解质中的染料分子可以抑制被吸附的染料分子从TiO2纳米粒子解吸的驱动力。结果,尽管初始效率略有下降,但由于染料解吸的减少,实现了高度增强的器件稳定性。

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