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A Comparative Study of a Novel Technique for the Fabrication of Dye Sensitized Solar Cells Using NanoTiO2 and Different Dyes

机译:纳米TiO2和不同染料制备染料敏化太阳电池新技术的比较研究。

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Dye-sensitized solar cells (DSSCs) have gained widespread attention in recent years because of their low production cost, ease fabrication and tunable optical properties, such as colour and transparency. Now-a-days natural dye was used to sensitize the electrode and the counter electrode was prepared by the help of carbon black. In this study we report molecularly engineered different dyes (henna, pomegranate and beet root) and nanoTiO2 in the DSSCs, which features the prototypical structure of a donor–π-bridge–acceptor and maximizes electrolyte compatibility with improved light-harvesting properties. BulkTiO2 of sizes 150 micron were converted to nanoTiO2 particles having sizes less than 20 nm using planetary ball mill. Our design consists of a lattice of modulated-diameter nanoTiO2 particles and interstitial regions filled with electrolyte. This provides not only light trapping and absorption enhancement, but offers improved electrical transport through the nanoTiO2 particles. It is observed that when frequency increases both capacitance and resistance decreases. At certain point capacitance it maintains a steady state and resistance is nearly equal to zero. This is due to the internal resistance and the steady state capacitance of the cell. It conforms that the fabricated dye sensitized solar cell works like a conventional cell. It is found that henna and pomegranate dyes shows better energy conversion efficiency than beet root dye.
机译:染料敏化太阳能电池(DSSC)近年来因其生产成本低,易于制造以及可调节的光学特性(如颜色和透明度)而受到广泛关注。如今,使用天然染料对电极进行增感,并通过炭黑制备对电极。在这项研究中,我们报道了DSSC中分子工程化的不同染料(henna,石榴和甜菜根)和nanoTiO2,其特征在于供体-π-桥-受体的原型结构,并最大程度提高了电解质的相容性并改善了光收集性能。使用行星式球磨机将尺寸为150微米的块状TiO2转换为尺寸小于20 nm的纳米TiO2颗粒。我们的设计由直径调制的纳米TiO2颗粒和填充电解质的间隙区域组成。这不仅提供了光捕获和吸收增强,而且提供了通过纳米TiO2颗粒的改进的电传输。观察到,当频率增加时,电容和电阻均减小。在某些点,电容保持稳定状态,电阻几乎等于零。这是由于电池的内部电阻和稳态电容引起的。这表明所制造的染料敏化太阳能电池的工作方式与常规电池相同。发现指甲花和石榴染料比甜菜根染料显示出更好的能量转换效率。

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