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Performance of Dye Sensitized Solar Cells (DSSC) using Syngonium Podophyllum Schott as Natural Dye and Counter Electrode

机译:使用合成阴道孢子Schott作为天然染料和对电极的染料敏化太阳能电池(DSSC)的性能

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The extraction of chlorophyll pigment of Syngonium podophyllum Schott leaves which is used as natural dyes in this DSSC devices. The use of dye from nature with its simple production process is very effective to reduce DSSC production cost. Besides being used as a natural dye, chlorophyll can also be used as an alternative counter electrode. Chlorophyll that is used as a counter electrode has been through chemical activation and carbonization processes. The characterization were done using Uv-Vis, Cyclic Voltametry and DSSC device under solar simulator. Characterization of chlorophyll absorbance using UV-Vis has resulted in typical absorbance peak at visible light wavelength of 447 nm and 666 nm. The Tauc equation analysis of the Uv-Vis characterization showed 1.91 eV energy gap of chlorophyll. Chlorophyll carbonized dye is used as an alternative to Pt counter electrode. Carbonized chlorophyll dye resulted in lower conversion efficiency of 0.308% with HSE electrolyte.
机译:用作该DSSC器件中的天然染料的合成孔径丘疹叶片叶绿素颜料的提取。 利用其简单生产过程使用染料与其简单的生产过程非常有效地降低DSSC生产成本。 除了用作天然染料外,叶绿素也可用作替代对电极。 用作对电极的叶绿素已经通过化学活化和碳化过程。 在太阳模拟器下使用UV-VIS,循环伏特法和DSSC装置进行表征。 使用UV-VI的叶绿素吸光度的表征导致可见光波长为447nm和666nm处的典型吸光度峰值。 UV-VI表征的XUC方程分析显示叶绿素的1.91 eV能量隙。 叶绿素碳化染料用作Pt对电极的替代物。 碳化叶绿素染料随HSE电解质导致较低的转化效率为0.308%。

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