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Effect of Natural and Synthetic Dyes on the Performance of Dye-Sensitized Solar Cells Based on ZnO Nanorods Semiconductor

机译:基于ZnO纳米棒半导体的自然和合成染料对染料敏化太阳能电池性能的影响

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The compatibility between natural dyes and semiconductors to produce a good performance of dye-sensitized solar cells plays an important role. The dyes from papaya leaves, mangosteen pericarps, beetroots, and N719 were investigated as sensitizers in the ZnO nanorods-based dye-sensitized solar cells. The ZnO film-coated fluorine-doped tin oxide glass substrates were prepared using a doctor blade method, followed by sintering at 450°C. Meanwhile, the counter electrode contained of chemically deposited catalytic platinum coating. The working electrodes were first immersed in the N719 dye solution and the respective natural dye solutions at corresponding concentrations of 8 g/100 mL and 21 g/100 mL. The absorptance spectra of the dyes and dye-loaded semiconductor-working electrode were obtained by UV-Vis spectroscopy. In addition, the Fourier transform infrared spectroscopy was used to determine the characteristic functionalities of the dye molecules. Furthermore, N719-based DSSC displayed the highest efficiency (0.47%) whereas papaya leaf-based DSSC achieved the highest efficiency (0.17%) amongst the studied natural dye-based DSSCs. The improved efficiency noted in the natural dye-based DSSC was attributed to the increased current density value. The high absorptance and low electrical resistance of the DSSC loaded with papaya leaf-based dye (concentration: 8 g/100 mL) contributed to the high generated current density value. However, further studies are required to improve the fill factor properties of these solar cells that were < 33%.
机译:天然染料与半导体之间的相容性,以产生良好的染料敏化太阳能电池性能起着重要作用。从基于ZnO纳米棒的染料敏化太阳能电池中,研究了木瓜叶片,山竹果皮,甜菜根和N719的染料。使用刮刀方法制备ZnO膜涂覆的氟掺杂氧化锡玻璃基材,然后在450℃下烧结。同时,对电极含有化学沉积的催化铂涂层。首先将工作电极浸入N719染料溶液中,并以相应的浓度为8g / 100ml和21g / 100ml,相应的天然染料溶液。通过UV-Vis光谱获得染料和染料负载半导体工作电极的吸收光谱。另外,使用傅里叶变换红外光谱法来确定染料分子的特征官能团。此外,基于N719的DSSC显示出最高效率(0.47%),而基于木瓜叶的DSSC的基于番木瓜的DSSC在学习的基于天然染料的DSSC中获得了最高效率(0.17%)。在基于天然染料的DSSC中提高的提高效率归因于增加的电流密度值。 DSSC的高吸收率和低电阻含有木瓜叶片染料(浓度:8g / 100ml),有助于高产生的电流密度值。然而,需要进一步的研究来改善这些太阳能电池的填充因子特性<33%。

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