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Enhancement of dye sensitized solar cell efficiency via incorporation of upconverting phosphor nanoparticles as spectral converters

机译:通过结合上转换的荧光粉纳米粒子作为光谱转换器,提高染料敏化太阳能电池的效率

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Upconverting NaYF4:Yb3+,Er3+/NaYF4 core-shell (CS) nanoparticles (NPs) were synthesized by thermal decomposition of lanthanide trifluoroacetate precursors and mixed with TiO2 NPs to fabricate dye-sensitized solar cells (DSSCs). The CS geometry effectively prevents the capture of electrons because of the surface states and improves photo-emission. The as-synthesized CS NPs show upconversion (UC) luminescence, converting near infrared (NIR) light into visible light (450-700nm), making the photon absorption by the ruthenium-based dyes (which have little or no absorption in the NIR region) possible. The champion DSSCs fabricated using CS UC NPs (average size=25nm) show enhancements of similar to 12.5% (sensitized with black/N749 dye) and of similar to 5.5% (sensitized with N719 dye) in overall power conversion efficiency under AM 1.5G illumination. This variation in the enhancement of the DSSC efficiencies for black and N719 dyes is attributed to the difference in the extinction coefficient and the absorption wavelength range of dyes. Incident photon-to-current conversion efficiency measurements also evidently showed the photocurrent enhancement in the NIR region of the spectrum because of the UC effect. The results prove that the augmentation in efficiency is primarily due to NIR to visible spectrum modification by the fluorescent UC NPs. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:NaYF4:Yb3 +,Er3 + / NaYF4核壳(CS)纳米粒子(NPs)是通过镧系三氟乙酸镧系元素前体的热分解合成的,并与TiO2 NPs混合制成染料敏化太阳能电池(DSSC)。 CS的几何形状有效地防止了由于表面状态而引起的电子捕获,并改善了光发射。合成后的CS NP表现出上转换(UC)发光,将近红外(NIR)光转换为可见光(450-700nm),使钌基染料吸收光子(在NIR区域吸收很少或没有吸收) )可能。使用CS UC NP(平均尺寸= 25nm)制造的冠军DSSC在AM 1.5G下的总功率转换效率提高了约12.5%(用black / N749染料敏化)和5.5%(用N719染料敏化)。照明。黑色和N719染料的DSSC效率提高的这种变化归因于染料的消光系数和吸收波长范围的差异。入射光子到电流转换效率的测量结果也很明显地表明,由于UC效应,光谱的NIR区域中的光电流得到了增强。结果证明,效率的提高主要归因于荧光UC NP对可见光谱的NIR修饰。版权所有(c)2015 John Wiley&Sons,Ltd.

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