首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Influence of indoline dye and coadsorbate molecules on photovoltaic performance and recombination in dye-sensitized solar cells based on electrodeposited ZnO
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Influence of indoline dye and coadsorbate molecules on photovoltaic performance and recombination in dye-sensitized solar cells based on electrodeposited ZnO

机译:吲哚染料和共吸附分子对基于电沉积ZnO的染料敏化太阳能电池光伏性能和复合的影响

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摘要

A detailed photoelectrochemical analysis of dye-sensitized solar cells based on electrodeposited porous ZnO, the indoline dye D149, cholic acid as optional coadsorbate, and a liquid iodide/triiodide electrolyte was performed. The effects of changes in the amount and chemical environment of the dye molecules on overall cell performance, distribution of trap states and recombination were studied. Short-circuit photocurrent, open-circuit photovoltage and cell efficiency improved with increasing amount of dye within the range investigated, while fill factors were lowered. The decline of the fill factor could be attenuated by coadsorbing cholic acid. Electrochemical impedance spectroscopy (EIS) was used to study the chemical capacitance, recombination resistance and series resistance in cells with different D149 loadings in the presence or absence of cholic acid. For increasing dye loading, the recombination parameter β and, in consequence, the recombination resistance around the maximum power point decreased, which explained the drop in the fill factors. In cells containing cholic acid, the conduction band edge was shifted upwards, the density of surface trap states was reduced, and the observed decrease of b was less pronounced compared to cells without coadsorbate. The charge transport in the electrolyte and the kinetics of charge transfer at the counter electrode were slowed down in cells with high dye content. A diode model accounting for non-linear recombination served to quantitatively link dye- and coadsorbate-induced changes in the voltage-dependence of the recombination resistance to the fill factor variation. Recombination with oxidized D149 molecules in aggregates and weak interaction between D149 and ZnO are discussed as physical origins of the observed trends.
机译:对基于电沉积的多孔ZnO,二氢吲哚染料D149,胆酸(可选的共吸附物)和液体碘化物/三碘化物电解质的染料敏化太阳能电池进行了详细的光电化学分析。研究了染料分子的数量和化学环境变化对整体细胞性能,陷阱态分布和重组的影响。在研究范围内,随着染料量的增加,短路光电流,开路光电压和电池效率得到改善,而填充因子降低。可以通过共吸附胆酸来减少填充因子的下降。电化学阻抗谱法(EIS)用于研究在存在或不存在胆酸的情况下,具有不同D149负载的细胞的化学电容,重组电阻和串联电阻。为了增加染料载量,降低了重组参数β,进而降低了最大功率点附近的重组阻力,这解释了填充因子的下降。在含有胆酸的细胞中,导带边缘向上移动,表面陷阱态的密度降低,观察到的b降低比没有共吸附剂的细胞明显。在具有高染料含量的电池中,电解质中的电荷传输和对电极处的电荷转移动力学会减慢。一个考虑了非线性重组的二极管模型可以定量地将染料和共吸附物引起的重组电阻的电压依赖性变化与填充因子变化联系起来。讨论了聚集态中氧化的D149分子的重组和D149与ZnO之间弱相互作用,这是观察到的趋势的物理来源。

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