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Electrophoretic deposition of Pt nanoparticles on plastic substrates as counter electrode for flexible dye-sensitized solar cells

机译:Pt纳米粒子电泳沉积在塑料基板上作为柔性染料敏化太阳能电池的对电极

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摘要

The low-temperature fabrication of a counter electrode (CE) with low cost and high catalytic activity is one of the key steps for the practical realization of flexible dye-sensitized solar cells (DSSCs). Electrophoretic deposition is found to be an efficient method for room-temperature deposition of platinum nanoparticles on plastic substrates with low cost. The plastic CEs show increased catalytic activity and reduced transmittance when the deposited time is increased from 0 to 8 min. Under optimized conditions, flexible DSSCs based on electrophoretic deposition plastic Pt CEs and nanocrystalline TiO_2 photoanodes on Ti foil reach an energy-conversion efficiency (η) of 5.8% (under a rear-side illumination of AM 1.5 lOOmWcm~(-2)), which is better than that for a device (η = 5.3%) fabricated under the same conditions with a sputtered Pt CE.
机译:具有低成本和高催化活性的对电极(CE)的低温制造是实际实现柔性染料敏化太阳能电池(DSSC)的关键步骤之一。发现电泳沉积是在塑料衬底上室温沉积铂纳米颗粒的低成本有效方法。当沉积时间从0分钟增加到8分钟时,塑料CE表现出增加的催化活性和降低的透射率。在优化的条件下,基于电泳沉积塑料Pt CEs和Ti箔上的纳米晶TiO_2光阳极的柔性DSSC(在AM 1.5 lOOmWcm〜(-2)的后侧照明下)的能量转换效率(η)为5.8%。这比在相同条件下用溅射Pt CE制造的器件(η= 5.3%)更好。

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