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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >In Situ Preparation of a Flexible Polyaniline/Carbon Composite Counter Electrode and Its Application in Dye-Sensitized Solar Cells
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In Situ Preparation of a Flexible Polyaniline/Carbon Composite Counter Electrode and Its Application in Dye-Sensitized Solar Cells

机译:柔性聚苯胺/碳复合对电极的原位制备及其在染料敏化太阳能电池中的应用

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摘要

A flexible composite electrode, which is composed of conducting polyaniline (PANI) as electroactive material and flexible graphite (FG) as conducting substrate, has been fabricated by in situ chemical polymerization to substitute for the expensive Pt counter electrode (CE) used in dye-sensitized solar cells (DSCs). The photovoltaic parameters of DSCs are strongly dependent on the oxidation state and the thickness of the PANI film. Higher photocurrent density and efficiency have been obtained by using emeraldine PANI compared to pernigraniline. The fabrication conditions, such as reaction time and initial monomer concentration, have been investigated to control the thickness of the PANI film. With initial monomer concentration of 0.3 M and reaction time of 60 min, an optimized PANI/FG composite CE with a PANI film thickness of 330 nm has been obtained. A DSC with the composite CE shows an overall conversion efficiency of 7.36%, which is comparable to 7.45% of that with Pt electrode under the same test condition. Facile charge-transfer and low sheet resistance of the composite electrode are suggested to be responsible for high performance of the DSC using such CE.
机译:通过原位化学聚合反应制备了柔性复合电极,该复合电极由导电聚苯胺(PANI)作为电活性材料和柔性石墨(FG)作为导电基材组成,以代替用于染料制备的昂贵的Pt对电极(CE)。敏化太阳能电池(DSC)。 DSC的光电参数在很大程度上取决于PANI膜的氧化态和厚度。相比于肾上腺素,通过使用翡翠PANI获得了更高的光电流密度和效率。已经研究了制造条件,例如反应时间和初始单体浓度,以控制PANI膜的厚度。在初始单体浓度为0.3 M且反应时间为60分钟的情况下,已获得了PANI / FG复合材料CE,其PANI膜厚度为330 nm。具有复合CE的DSC在相同测试条件下的总转换效率为7.36%,与Pt电极的7.45%相当。建议使用这种CE的复合材料电极电荷转移方便且薄层电阻低,这是DSC高性能的原因。

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