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Energy storage capability of the dye sensitized solar cells via utilization of highly porous carbon electrodes

机译:通过使用高度多孔的碳电极,染料敏化太阳能电池的储能能力

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Dye sensitized solar cells (DSSCs) have shown promising results in the field of renewable energy owing to their low cost and portable features. In practical applications, their harvested energy could be stored in a supercapacitor once it exceeds the regular consumption. Various methods of manipulation of the active electrode have been examined to facilitate the energy storage of the system, whereas the counter electrode has always been known for its catalytic functionality and its contribution to the capacitive response of the device left a well-oriented study to be desired. In this work, the substitution of the platinum electrode with a specific porous electrode resulted in a supercapacitive behavior of the device. The photoactive electrode was fabricated using zinc oxide nanowires (ZnO) grown on a conductive transparent substrate with hydrothermal deposition method. The electrode was used to make a standard DSSC using a ruthenium dye, iodide/triiodide standard redox electrolyte, and a platinum counter electrode. The cyclic voltammetry (CV) study of the device showed a low capacitance with 350 mV open circuit voltage. Replacing the platinum counter electrode with a particularly designed porous paper-based carbon nanotube electrode resulted in a considerable difference in the CV response. A capacitive behavior was observed due to the large surface area of the counter electrode and the ZnO nanostructures on the photoactive electrode. Due to the large capacitance and relatively small photocurrent, the change in the open circuit voltage was limited. However, enhancement of the photocurrent could improve both the energy harvesting and charge storage in the device.
机译:染料敏化太阳能电池(DSSC)由于其低成本和便携式特性,在可再生能源领域已显示出令人鼓舞的结果。在实际应用中,一旦超出正常消耗量,它们收集的能量就可以存储在超级电容器中。已经研究了各种操作有源电极的方法来促进系统的能量存储,而对电极一直以其催化功能及其对设备电容响应的贡献而著称,尚需进行深入研究。想要的。在这项工作中,用特定的多孔电极代替铂电极导致了器件的超电容性能。使用通过水热沉积法在导电透明基板上生长的氧化锌纳米线(ZnO)制成光敏电极。该电极用于使用钌染料,碘化物/三碘化物标准氧化还原电解质和铂对电极制成标准DSSC。该器件的循环伏安法(CV)研究显示开路电压为350 mV时电容较低。用特别设计的多孔纸基碳纳米管电极代替铂对电极会导致CV响应出现明显差异。由于反电极的大表面积和光敏电极上的ZnO纳米结构,观察到了电容行为。由于大电容和相对较小的光电流,开路电压的变化受到限制。但是,提高光电流可以同时改善设备中的能量收集和电荷存储。

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