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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Tandem organic dye-sensitized solar cells: Looking for higher performance and durability
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Tandem organic dye-sensitized solar cells: Looking for higher performance and durability

机译:串联有机染料敏化太阳能电池:寻求更高的性能和耐用性

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摘要

High-performance dye-sensitized solar cells (DSSCs) are the result of state-of-the-art blend of knowledge and experience; but finding accurate sensitizers from one side and explicit demonstration of the effects of material parameters on the power conversion efficiency (PCE) from the other side are direct challenges to the manufacture of DSSCs. Tandem DSSCs (T-DSSCs) is a young member of such family which allows one to attain higher power conversion efficiencies (PCE), but complications beyond T-DSSC manufacture has urged researchers to make use of Edisonian approach. Response Surface Methodology (RSM) and Desirability Function (DF) approaches are used to optimize T-DSSCs manufacture. Thickness of TiO2 layer, time required for TiCl4 treatment, and the concentration of anti-aggregation agent are explanatory variables changed to manufacture T-DSSCs with optimized photocurrent (J(sc)), photovoltage (V-oc) and Durability. The concentration of anti-aggregation agent was the key factor in attaining high-performance T-DSSCs. By the combined use of RSM and DF and through multi-objective optimization, it was found that under anti-aggregation agent concentration of 0.012 mM, thickness of TiO2 of 24.2 mu m, and TiCl4 treatment time of ca. 78 min, T-DSSC having the highest possible performance with J(sc) (13.37 mA/cm(2)), V-oc (1.054 V), and Durability (1388 h) can be achieved.
机译:高性能染料敏化太阳能电池(DSSCs)是最先进的知识和经验的结果;但是,从一侧找到精确的敏感剂,并明确证明材料参数对来自另一侧的电力转换效率(PCE)的影响是对DSSC的制造的直接挑战。串联DSSCS(T-DSSCS)是此类家庭的年轻成员,其允许人们获得更高的功率转换效率(PCE),但T-DSSC制造的并发症敦促研究人员利用爱迪生方法。响应面方法(RSM)和可期望功能(DF)方法用于优化T-DSSCS制造。 TiO2层的厚度,TiCl4处理所需的时间,抗聚集剂的浓度是用优化的光电流(J(SC)),光伏(V-OC)和耐久性制造T-DSSCS的说明变量。抗聚集剂的浓度是获得高性能T-DSSCs的关键因素。通过RSM和DF的结合和通过多目标优化,发现在抗聚集剂浓度为0.012mm,TiO 2的厚度为24.2μm,以及Ca的TiCl4处理时间。 78分钟,T-DSSC具有j(sc)的最高性能(13.37 mA / cm(2)),V-oc(1.054 V)和耐用性(1388 h)。

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