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Performance of dye-sensitized solar cell fabricated using titania nanoparticles calcined at different temperatures

机译:不同温度煅烧二氧化钛纳米颗粒制备染料敏化太阳能电池的性能

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Synthesis of titania (TiO2) nanoparticles by sol-gel method and their calcination at different temperatures, viz 450 °C, 550 °C and 650 °C (defined as T450, T550 and T650) has been done. Structural analysis indicates that the T450 sample possesses anatase phase. The phase transformation to rutile starts occurring at T550, and, on increasing the calcination temperature, the crystallization and percentage of rutile phase increases. As the temperature increases from 450 to 650 °C, the crystallite size increases by about a factor of two from 11.5 to 20.2 nm. From SEM micrographs, T550 electrode has been found to have appropriate aggregation, which led to enhanced dye desorption, as compared to T450 and T650 based electrodes. TEM images of the synthesized nanoparticles reveal that the particle size increases from 7 to 28 nm on increasing the calcination temperature from 450 to 650 °C. From the photoluminescence and Fourier transform infrared studies, it has been concluded that the surface OH− groups are reduced on calcination, which affects the electron injection efficiency. The dye sensitized solar cell, fabricated using T550 sample, having a ratio of anatase/rutile 89:11, has been found to achieve the highest conversion efficiency.
机译:通过溶胶-凝胶法合成二氧化钛(TiO2)纳米颗粒及其在不同温度下(即450 °C、550 °C和650 °C)的煅烧作用(定义为T450、T550和T650)已经完成。结构分析表明,T450样品具有锐钛矿相。向金红石的相变始于 T550,随着煅烧温度的升高,金红石相的结晶和百分比增加。随着温度从450°C升高到650°C,微晶尺寸从11.5nm增加到20.2nm,增加了约两倍。从SEM显微照片中发现,与基于T450和T650的电极相比,T550电极具有适当的聚集性,从而增强了染料的解吸性。合成纳米颗粒的透射电镜图像显示,当煅烧温度从450°C提高到650°C时,粒径从7nm增加到28nm。 通过光致发光和傅里叶变换红外研究,可以得出结论,煅烧时表面OH−基团降低,影响了电子注入效率。使用T550样品制造的染料敏化太阳能电池,锐钛矿/金红石的比例为89:11,已被发现可实现最高的转换效率。

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