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首页> 外文期刊>Materials science in semiconductor processing >Effect of co-sensitization in solar exfoliated TiO2 functionalized rGO photoanode for dye-sensitized solar cell applications
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Effect of co-sensitization in solar exfoliated TiO2 functionalized rGO photoanode for dye-sensitized solar cell applications

机译:共敏化在染料敏化太阳能电池应用中的太阳能剥落TiO2官能化Rgo PhotoNode的影响

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摘要

In this report graphene oxide is successfully prepared by modified Hummers' method at room temperature without using low temperature ice bath reactor. For the fabrication of DSSC photoanode, rGO-TiO2 nanocomposite was prepared using a novel two step hydrothermal and solar exfoliation process. Formation of anatase TiO2 with tetragonal structure is confirmed using XRD pattern. Peak splitting occurs in Raman 2D band indicates the presence of bi-layer rGO. FESEM and HRTEM studies show the synthesized spherical shaped TiO2 nanoparticles embedded on rGO flakes and the average particulate size is found to be c.a 10 nm. FTIR and XPS results confirm the formation of direct bonding between Ti and C atoms in rGO-TiO2 by the observation of vibrational band at 1124 cm(-1) and binding energy at 284.13 eV respectively. DSSC devices are fabricated and EIS measurements are performed to determine interfacial charge transfer kinetics such as chemical capacitance, recombination resistance and electron lifetime. Here, we report for the first time the results on the co-sensitization of solar exfoliated rGO-TiO2 as photoanode using a combination of metal-free and metal-based organic dyes. Enhanced PCE of 6.9% is realized in N719 + N3 co-sensitized DSSC by its increased electron recombination lifetime.
机译:在该报告中,通过在室温下通过改性拔液法在室温下成功制备石墨烯氧化物,而不使用低温冰浴反应器。为了制备DSSC光电阳极,使用新型两步水热和太阳能剥离方法制备RGO-TiO2纳米复合材料。使用XRD图案确认具有四方结构的锐钛矿TiO2的形成。在拉曼2D频段中发生峰值分裂,表示存在双层rgo。 FeSEM和HRTEM研究表明,嵌入RGO薄片上的合成球形TiO2纳米颗粒,并且发现平均颗粒尺寸为C.a10nm。 FTIR和XPS结果通过在1124cm(-1)的振动带分别在284.13eV下观察振动带,确认在RGO-TiO2中Ti和C原子之间的直接键合。 DSSC器件是制造的,并且进行EIS测量以确定界面电荷转移动力学,例如化学电容,重组电阻和电子寿命。在这里,我们首次报告了使用无金属和金属的有机染料的组合的光电仪对光电仪的共同敏化的结果。通过增加的电子复合寿命,在N719 + N3共敏化DSSC中实现了6.9%的增强PCE。

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