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The Effect of Electrode Immersion Time and Ageing on N719 Dye-Sensitized Solar Cells Performance

机译:电极浸渍时间和老化对N719染料敏化太阳能电池性能的影响

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One of the most promising devices belonging to the third generation of photovoltaic technologies is dye-sensitized solar cell (DSSC). It can be considered as an economic substitute for the first and second generation of solar cells which provides relatively high conversion efficiency at low cost of material and simple manufacturing. This technology is widely developed nowadays thus it can contribute the meeting of the current and future energy demands. However, much work should be done to increase solar-electricity conversion efficiency of DSSC. It is identified that a crucial component which strongly affects the performance of the working dye-sensitized cell is dye sensitizer used to enhance the light harvesting. The adjustment of the amount of the adsorbed dye by a modification of photoelectrode immersion time in dye solution plays a crucial role. The objective of this study was to report the influence of electrode immersion time on dye-sensitized solar cells performance and to evaluate the stability of obtained cells. DSSC assemblies were prepared in the sandwich way with the working area equal to 0.8 cm2. The impact of various immersion times in N719 dye solution of the TiO2 covered photoelectrodes have been investigated. In the study, the process of encapsulation of the cells with sealant gaskets was enhanced which caused the improvement of the stability and tightness of the obtained DSSC devices. The methodological process adopted in this investigation includes measurements of current-voltage (I-V) characteristics performed right after cell preparation, and after 72 hours to evaluate the role of ageing. The characterization of the obtained solar cells was carried out under standard test conditions (STC; temperature 25°C, irradiance 100 mW/cm2, air mass AM 1.5). On the basis of I-V curves measurements, characteristic operating parameters of the obtained DSSC assemblies such as open circuit voltage (VOC), short circuit current (ISC), and maximum power point (MPP) have been established. The results of this research indicate that the time of electrode immersion in the dye solution affects strongly the DSSC performance. Thus, the control of the stage of the dye adsorption by the TiO2 layer is vitally important.
机译:属于第三代光伏技术的最有希望的设备之一是染料敏化的太阳能电池(DSSC)。它可以被认为是第一代和第二代太阳能电池的经济替代品,其在材料的低成本和简单的制造成本下提供相对高的转换效率。这项技术现在广泛开发,因此它可以促进当前和未来的能源需求的会议。但是,应该做出很多工作来提高DSSC的太阳能转换效率。鉴定它强烈影响工作染料致敏细胞性能的重要组成部分是用于增强光收获的染料敏化剂。通过染料溶液中光电极浸渍时间的改性调节吸附染料的量起到至关重要的作用。本研究的目的是报告电极浸渍时间对染料敏化太阳能电池性能的影响,并评估所得细胞的稳定性。用等于0.8cm 2的工作区域以夹层方式制备DSSC组件。研究了各种浸入时间在TiO2覆盖光电子的N719染料溶液中的影响。在该研究中,提高了具有密封剂垫圈的细胞的封装过程,这导致所获得的DSSC器件的稳定性和密封性的提高。本研究采用的方法工艺包括在细胞制备后的电流 - 电压(I-V)特性的测量,并在72小时后评估老化的作用。所得太阳能电池的表征在标准试验条件下进行(STC;温度25℃,辐照度100mW / cm2,空气质量am 1.5)。在I-V曲线测量的基础上,已经建立了所获得的DSSC组件的特性操作参数,例如开路电压(VOC),短路电流(ISC)和最大功率点(MPP)。该研究的结果表明,染料溶液中的电极浸泡的时间强烈影响DSSC性能。因此,通过TiO 2层的染料吸附的阶段的控制是至关重要的。

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