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Anthocyanin extracted from Hibiscus (Hibiscus rosa sinensis L.) as a photosensitizer on nanostructured-TiO2 dye sensitized solar cells

机译:从芙蓉(Hibiscus Rosa Sinensis L)中提取的花青素作为纳米结构 - TiO2染料敏化太阳能电池的光敏剂

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Anthocyanin extracted from Hibiscus (Hibiscus rosa sinensis L) as a photosensitizer in nanostructured-TiO2 dye sensitized solar cells has been fabricated. Ultravisible visible absorption spectra of anthocyanin show an ability absorbing light in the visible region. While the nanostructed-TiO2 powder in this research was prepared by sol-gel method following annealled at a temperature of 600°C. Subsequently, the TiO2 nanostructures were characterized by XRD, XRF, and SEM. The difractogram X-ray results shown that TiO2 was built from f anatase and rutile phase. Element analysis of synthesized TiO2 by X-ray Fluorecence (XRF) shown the TiO2 content of 98,67 wt%. TiO2 layer prepared at different thickness showed the average size of cavity about 0.83?μm. These several thickness of solar cells were fabricated and were immersed into anthocyanin for 24 hours to gain sensitized TiO2 photoanode for Dye sensitised solar cells (DSSCs). These DSSCS performance were measured using I-V Keithley 2602A. The results exhibited that the sample with a TiO2 layer thickness of 4.75 ± 0.8?μm has the highest efficiency.
机译:已经制造了从芙蓉(Hibiscus Rosa Sinensis L)中提取的花青素作为纳米结构-TiO2染料敏化太阳能电池的光敏剂。花青素的超可见可见吸收光谱显示出可见区域中吸收光的能力。虽然该研究中的纳米结构-TiO2粉末通过在600℃的温度下的溶胶 - 凝胶方法制备。随后,通过XRD,XRF和SEM表征TiO2纳米结构。表明TiO2的二分枝X射线结果是由F锐钛矿和金红石相构建的。 X射线氟化(XRF)合成TiO2的元素分析显示为98,67wt%的TiO2含量。在不同厚度制备的TiO2层显示出约0.83Ωμm的平均尺寸。制造这些几种厚度的太阳能电池,并将其浸入花青素中24小时,以获得染料敏化太阳能电池(DSSCs)的敏化TiO2光电码。使用I-V keithley 2602a测量这些DSSCS性能。结果表明,具有TiO2层厚度为4.75±0.8≤μm的样品具有最高效率。

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