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Incorporating hydrangea-like titanium dioxide light scatterer with high dye-loading on the photoanode for dye-sensitized solar cells

机译:在染料阳极上将类似染料的绣球状二氧化钛光散射体与高染料负载量结合在一起,用于染料敏化太阳能电池

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The light scattering layer is significant for dye-sensitized solar cells (DSSCs) to harvest incident light more efficiently and excite larger amounts of electrons. Hydrangea-like TiO2 (H-TiO2) and coral-like TiO2 (C-TiO2) nanostructures are synthesized via a hydrothermal method without using templates. Both of the nanostructures are applied as the light scattering layer for DSSCs with the commercial P90 TiO2 nanoparticles as the dye-adsorbed underlayer in the photoanodes. The DSSC with H-TiO2 as the light scattering layer achieves a higher light-to-electricity conversion efficiency (eta) of 7.50% than those of 6.70% and 6.61% for the cells with C-TiO2 and commercial TiO2 as the light scattering layer, and of 6.41% for the DSSC without a light scattering layer in its photoanode, mainly due to the enhanced photocurrent density through the abundant dye adsorption coupled with the inherent light scattering ability for the former case. The results indicate that not only the importance of the light scattering layer in the photoanode but the morphology of the nanostructure composed of the light scattering layer plays great roles on the light scattering and the dye-adsorbing capabilities. The incident photon-to-current efficiency the electrochemical impedance spectroscopy measurements are also applied to analyze the electrochemical performance of the resulting DSSCs. (C) 2016 Elsevier B.V. All rights reserved.
机译:光散射层对于染料敏化太阳能电池(DSSC)可以更有效地收集入射光并激发大量电子具有重要意义。绣球状的TiO2(H-TiO2)和珊瑚状的TiO2(C-TiO2)纳米结构是通过水热法合成的,无需使用模板。两种纳米结构均被用作DSSC的光散射层,而商用P90 TiO2纳米颗粒作为光阳极中的染料吸附底层。以H-TiO2为光散射层的DSSC实现了7.50%的光电转换效率(eta)高于以C-TiO2和市售TiO2为光散射层的电池的6.70%和6.61%的光电转换效率(eta) DSSC的光阳极中没有光散射层,为6.41%,这主要是由于通过丰富的染料吸附提高了光电流密度,并且前者具有固有的光散射能力。结果表明,不仅光散射层在光电阳极中的重要性,而且由光散射层组成的纳米结构的形态对光散射和染料吸附能力也起着重要作用。入射光子-电流效率的电化学阻抗谱测量也可用于分析所得DSSC的电化学性能。 (C)2016 Elsevier B.V.保留所有权利。

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