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一种由分级花和纳米颗粒组成的双层 TiO2 光电阳极,用于高效染料敏化太阳能电池。

A double layered TiO2 photoanode consisting of hierarchical flowers and nanoparticles for high-efficiency dye-sensitized solar cells.

机构信息

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, KLGHEI of Environment and Energy Chemistry, School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, PR China.

出版信息

Nanoscale. 2013 May 21;5(10):4362-9. doi: 10.1039/c3nr00508a.

Abstract

We report the innovative development of a double layered photoanode made of hierarchical TiO2 flowers (HTFs) as the overlayer and TiO2 nanoparticles (TNPs) as the underlayer, for dye-sensitized solar cells (DSSCs). They were prepared via a mild and simple one-step hydrothermal reaction of TiO2 nanoparticles/FTO glass substrate in an alkaline solution. The underlayer made of TNPs with a small size (20 nm in diameter) serves as a transparent photoanode for efficient dye adsorption. The overlayer consisting of HTFs (3-5 μm in diameter) embedded by TiO2 nanosheets plays multiple roles in enhancing light-scattering and fast electron transport. DSSCs based on this novel double layered photoanode (5 μm TNPs + 5 μm HTFs) exhibit greater than 7.4% power conversion efficiency (PCE), which is higher than that of single layer TNP based photoanodes (6.59%) with similar thickness (∼10 μm), and this is mainly attributed to the superior light scattering ability and fast electron transport of the former. Meanwhile, the thickness of the TNP underlayer has been optimized to further improve the PCE and an excellent PCE of over 9% has been achieved based on a 15 μm TNP + a 5 μm HTF double layered photoanode, accompanied by a short-circuit photocurrent density of 17.85 mA cm(-2), an open-circuit voltage of 763 mV and a fill factor of 0.67.

摘要

我们报告了一种双层光阳极的创新发展,该光阳极由分层 TiO2 花(HTFs)作为覆盖层和 TiO2 纳米颗粒(TNPs)作为底层组成,用于染料敏化太阳能电池(DSSCs)。它们是通过在碱性溶液中使用 TiO2 纳米颗粒/FTO 玻璃衬底的温和简单的一步水热反应制备的。由小尺寸(直径 20nm)TNPs 制成的底层用作透明光阳极,可有效吸附染料。由 TiO2 纳米片嵌入的 HTFs(直径 3-5μm)组成的覆盖层在增强光散射和快速电子传输方面具有多种作用。基于这种新型双层光阳极(5μm TNPs+5μm HTFs)的 DSSCs 的功率转换效率(PCE)大于 7.4%,高于具有相似厚度(约 10μm)的单层 TNP 基光阳极(6.59%),这主要归因于前者的优异光散射能力和快速电子传输。同时,优化了 TNPs 底层的厚度,以进一步提高 PCE,基于 15μm TNP+5μm HTF 双层光阳极,实现了超过 9%的优异 PCE,同时伴有 17.85mA/cm^-2 的短路光电流密度、763mV 的开路电压和 0.67 的填充因子。

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