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首页> 外文期刊>Dyes and Pigments >The effect of N-substitution and ethylthio substitution on the performance of phenothiazine donors in dye-sensitized solar cells
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The effect of N-substitution and ethylthio substitution on the performance of phenothiazine donors in dye-sensitized solar cells

机译:染料敏化太阳能电池中N取代和乙硫基取代对吩噻嗪供体性能的影响

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摘要

Three new organic sensitizers with phenothiazine chromophores were synthesized and used in dye-sensitized solar cells. N-substituents were added to the phenothiazine to suppress dye aggregation and an ethylthiol was added as an additional donor function. The effects of these substituents on the performance of the dyes were investigated by assessing the photophysical, electrochemical, and photovoltaic properties. The introduction of an N-methoxyphenyl unit improved the open-circuit voltage; the addition of the ethylthiol unit decreased the amount of dye adsorbed on the TiO2. A very high open-circuit voltage of 818.5 mV was achieved by the phenothiazine with added N-methoxyphenyl and ethylthiol groups. However, the best overall conversion efficiency was achieved by a cell fabricated with a phenothiazine devoid of the ethylthiol group (an overall conversion efficiency = 6.02%, short-circuit current = 10.20 mA/cm~2, open-circuit voltage = 781.7 mV, fill factor = 75.50% under AM 1.5G conditions) due to the high open-circuit voltage and greater dye adsorption.
机译:合成了三种带有吩噻嗪发色团的新型有机敏化剂,并将其用于染料敏化太阳能电池。将N-取代基添加到吩噻嗪中以抑制染料聚集,并添加乙硫醇作为附加的供体功能。这些取代基对染料性能的影响是通过评估其光物理,电化学和光伏特性来研究的。 N-甲氧基苯基单元的引入改善了开路电压。乙硫醇单元的加入减少了TiO2上吸附的染料量。通过添加N-甲氧基苯基和乙基硫醇基的吩噻嗪实现了818.5 mV的非常高的开路电压。但是,使用不含乙硫醇基的吩噻嗪制得的电池可获得最佳的总转化效率(总转化效率= 6.02%,短路电流= 10.20 mA / cm〜2,开路电压= 781.7 mV,填充系数=在AM 1.5G条件下为75.50%),这是因为高开路电压和更大的染料吸附能力。

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