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Design and coupling of multifunctional TiO2 nanotube photonic crystal to nanocrystalline titania layer as semi-transparent photoanode for dye-sensitized solar cell

机译:多功能TiO2纳米管光子晶体与纳米晶二氧化钛层的耦合及其作为染料敏化太阳能电池的半透明光阳极

摘要

In order to conquer the challenges in the current technology to couple a dye-sensitized solar cell (DSSC) with a photonic crystal (PC), we propose a novel design of PC-based photoanode, composed of a thick TiO2 nanoparticle absorption layer and a thin TiO2 nanotube photonic crystal (TiO2 NT PC) membrane. In this architecture, the bandgap of TiO2 NT PC can be precisely tailored by modulating the anodization parameters using the current-pulse anodization process. Owing to the selective reflectivity of TiO2 NT PC, the power conversion efficiency (PCE) of the electrodes reveals a strong wavelength dependence. Strategies to enhance the efficiency of the newly designed DSSC and its relation to the selective reflection of the photoanode are discussed and evaluated by experimental and simulated results. Meanwhile, the functionality of TiO2 NT PC, offering both PC and light-scattering effects, has also been clarified. The combined effects of PC and light-scattering yield the maximum enhancement in PCE (39.5%) when the tailored TiO2 NT PC, with the best matching of its reflectance maximum to the dye absorption maximum, is integrated into a DSSC. The work presented here provides new insights into the design and tailoring of a photonic crystal to enhance the PCE of DSSCs for practical applications.
机译:为了克服将染料敏化太阳能电池(DSSC)与光子晶体(PC)耦合的当前技术挑战,我们提出了一种新颖的基于PC的光阳极设计,该阳极由厚的TiO2纳米颗粒吸收层和一层薄的TiO2纳米管光子晶体(TiO2 NT PC)膜。在这种架构中,可以通过使用电流脉冲阳极氧化工艺调制阳极氧化参数来精确定制TiO2 NT PC的带隙。由于TiO2 NT PC的选择性反射率,电极的功率转换效率(PCE)显示出很强的波长依赖性。通过实验和仿真结果讨论和评估了提高新设计的DSSC的效率及其与光电阳极选择性反射的关系的策略。同时,还阐明了同时具有PC和光散射效果的TiO2 NT PC的功能。当量身定制的TiO2 NT PC(其最大反射率与最大染料吸收率最佳匹配)整合到DSSC中时,PC和光散射的综合效果可最大程度地提高PCE(39.5%)。本文介绍的工作为光子晶体的设计和定制提供了新的见识,以增强DSSC在实际应用中的PCE。

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