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Orange photoluminescent N-doped graphene quantum dots as an effective co-sensitizer for dye-sensitized solar cells

机译:橙色光致发光N掺杂石墨烯量子点作为染料敏化太阳能电池的有效共敏化剂

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摘要

In this research, nanocoral (NC) film of TiO2 was decorated with nitrogen-doped graphene quantum dots (NGQDs, average size of similar to 9 nm) and photovoltaic properties were investigated for dye-sensitized solar cell application. TiO2 NCs and NGQDs synthesized separately using the hydrothermal method and TiO2 NCs were decorated with NGQD solution by spin coating. FESEM images prove that TiO2 NCs are composed from nanorods, with an average diameter of about 60 nm. Optical characterization shows that the NGQDs are highly orange-luminescent (emission at 590 nm) and absorb UV and visible light photons. Using NGQDs together with N719 dye as co-sensitizers led to an improvement in efficiency of DSSC, as investigated by photoelectrical measurements. The experimental analysis reveals that this improvement arises from enhancement of charge separation and collection due to the cascaded energy levels because of presence of NGQDs. By addition of NGQDs into TiO2 NC photoanode, we were able to increase the short-circuit current density and efficiency by 40% (from 12.61 to 17.65 mA/cm(2)) and 31% (from 5.72 to 7.49%), respectively.
机译:在该研究中,用氮掺杂的石墨烯量子点(NGQDS,相似的平均尺寸为9nm),对染料敏化太阳能电池应用研究了纳米粒子(NC)膜。使用水热法分别合成的TiO2 NCS和NGQDS通过旋涂用NGQD溶液装饰。 FeSEM图像证明TiO2 NCS由纳米棒组成,平均直径为约60nm。光学表征表明,NGQDS是高度橙色的发光(590nm的发射),并吸收UV和可见光光子。使用NGQD与N719染料一起作为共敏化体导致DSSC的效率提高,如光电测量所研究。实验分析表明,由于存在NGQD,由于级联的能量水平,这种改进来自电荷分离和收集的增强。通过将NGQDS添加到TiO 2 NC Photanode中,我们能够将短路电流密度和效率提高40%(从12.61至17.65 mA / cm(2))分别为31%(从5.72至7.49%)。

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