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ZnO solar cells with an indoline sensitizer: a comparison between nanoparticulate films and electrodeposited nanowire arrays

机译:具有二氢吲哚敏化剂的ZnO太阳能电池:纳米颗粒薄膜和电沉积纳米线阵列之间的比较

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摘要

The photovoltaic properties of nanostructured ZnO films sensitized with the indoline derivative dye D149 were studied. The performance of dye-sensitized solar cells built from ZnO building blocks with different morphology, (a) randomly oriented nanoparticle network and (b) nanowire arrays, was compared. The nanoparticle networks were prepared by the standard doctor blade technique from commercial ZnO powders and the nanowire arrays were electrodeposited in aqueous media. Two different lengths for the nanowire arrays (2.5 and 5 um) were considered. The characterization included electron microscopy, adsorption measurements, optical spectroscopy, current-voltage characteristics, open-circuit voltage versus light intensity, incident-photon-to-current efficiency, open circuit voltage decay and impedance spectroscopy under illumination. In spite of the smaller dye loadings of the nanowires with respect to the nanoparticles, the former showed a remarkably effective integrated optical absorption (in the range from 370 to 700 nm, 57% versus 69% for the latter). However the photocurrents for nanowires were lower than expected from this good absorption, which suggests that recombination rather than solar light harvesting can be the limiting factor in these nanowire-based solar cells. The impedance analysis and the open-circuit voltage decays showed smaller recombination resistances and shorter lifetimes for the nanowire-based solar cells. However, the interpretation of the recombination resistances, capacitances and lifetimes in the case of the nanowires is likely affected by space-charge effects and back-reaction through the substrate. An understanding of the effects discovered in this study is very valuable for the development of strategies to enhance the energy conversion efficiency for the ZnO nanowire array based solar cells.
机译:研究了用二氢吲哚衍生物染料D149敏化的纳米结构ZnO薄膜的光电性能。比较了由具有不同形态,(a)随机取向的纳米粒子网络和(b)纳米线阵列的ZnO构件构建的染料敏化太阳能电池的性能。纳米颗粒网络是通过标准刮刀技术从商业ZnO粉末制备的,纳米线阵列电沉积在水性介质中。考虑了纳米线阵列的两种不同长度(2.5和5 um)。表征包括电子显微镜,吸附测量,光谱学,电流-电压特性,开路电压与光强度的关系,入射光子-电流效率,开路电压衰减和照明下的阻抗谱。尽管纳米线相对于纳米粒子的染料负载量较小,但前者仍显示出非常有效的集成光吸收(在370至700 nm的范围内,后者为57%,而后者为69%)。然而,纳米线的光电流低于这种良好吸收所预期的电流,这表明在这些基于纳米线的太阳能电池中,重组而不是太阳光收集可能是限制因素。阻抗分析和开路电压衰减表明,基于纳米线的太阳能电池的复合电阻较小,寿命较短。然而,在纳米线的情况下,复合电阻,电容和寿命的解释很可能受到空间电荷效应和通过衬底的反作用的影响。对本研究中发现的效应的理解对于制定策略以提高基于ZnO纳米线阵列的太阳能电池的能量转换效率非常有价值。

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  • 来源
    《Energy & environmental science》 |2011年第9期|p.3400-3407|共8页
  • 作者单位

    Deparlament of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide, 41013 Sevilla, Spain;

    New Materials Department, CIDETEC, Centre for Electrochemical Technologies, ParqueTecnologico de San Sebastian, Paseo Miramon 196, Donostia-San Sebastian, 20009, Spain;

    Department of Chemistry, University of Bath, BA2 7AY, UK;

    Department of Synthesis and Catalysis, J. Heyrovsky Institute of Physical Chemistry, v.v.i, Academy of Sciences of the Czech Republic, Dolejskova 3, CZ, 18223 Prague 8, Czech Republic;

    New Materials Department, CIDETEC, Centre for Electrochemical Technologies, ParqueTecnologico de San Sebastian, Paseo Miramon 196, Donostia-San Sebastian, 20009, Spain;

    Deparlament of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide, 41013 Sevilla, Spain;

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