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首页> 外文期刊>Electrochimica Acta >High-efficiency dye-sensitized solar cells based on bilayer structured photoanode consisting of carbon nanofiber/TiO 2 composites and Ag@TiO 2 core-shell spheres
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High-efficiency dye-sensitized solar cells based on bilayer structured photoanode consisting of carbon nanofiber/TiO 2 composites and Ag@TiO 2 core-shell spheres

机译:基于双层结构化光电码的高效染料敏化太阳能电池组成的碳纳米纤维/ TIO 2 Composites和AG @ Tio 2 核心壳球形

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摘要

In this contribution, bilayer structured photoanode consisting of electron transport layer and light-scattering layer was elaborately designed for dye-sensitized solar cells (DSSCs). The electron transport layer was constructed by hierarchical carbon nanofiber/TiO2(CF/TiO2) composites characterized by high electrical conductivity, while the light-scattering layer was assembled by Ag@TiO2core-shell spheres with excellent light-scattering capacity. To demonstrate the potential application of such promising photoanode, the DSSC based on CF/TiO2-Ag@TiO2bilayer structured photoanode was fabricated and characterized in detail. In stark contrast, the resultant DSSC exhibited a superior short-circuit photocurrent density of 16.51?mA?cm?2, a prolonged electron lifetime of 93.7?ms, as well as a notable enhanced PCE up to 7.35%, which was about 41% higher than that of commercial P25-based DSSC. Along with the analysis of microstructure characteristics, light absorption/reflection spectra as well as electrochemical impedance spectroscopy, the significantly enhanced photovoltaic performance of DSSC based on the bilayer structured photoanode were believed to be related to the combined effect of sufficient dye loading endowed by the large specific surface area of photoanode materials, the outstanding light-harvesting capacity offered by the unique Ag@TiO2light-scattering layer and the efficient electron transfer and/or negligible interfacial charge recombination benefited from the unique CF/TiO2electron transport layer.
机译:在该贡献中,精心设计由电子传输层和光散射层组成的双层结构光电极,专为染料敏化太阳能电池(DSSC)。电子传输层通过具有高导电性的等级碳纳米纤维/ TiO 2(CF / TiO 2)复合材料构成,而通过Ag @ TiO 2克罗壳球体组装光散射层,具有优异的光散射能力。为了证明这种有前途的光电码的潜在应用,基于CF / TiO2-AG @ TiO2Bilayer结构化光电码进行了详细制造和表征。在STARK对比中,所得DSSC表现出16.51μm≤CM2的优异短路光电流密度,延长的电子寿命为93.7Ωms,以及显着的增强PCE,高达7.35%,为约41%高于商业P25的DSSC。随着微观结构特征,光吸收/反射光谱的分析,以及电化学阻抗谱,基于该双层结构化光电阳极DSSC的显著增强光伏性能被认为是相关的足够染料加载的由大赋予的组合效果光电码材料的比表面积,由独特的AG @ TiO 2光散射层提供的出色的光收获容量和有效的电子传递和/或可忽略的界面电荷重组受益于独特的CF / TiO2电气传输层。

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