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Ultrasonic Remove of Particle Aggregation in Carbon Based Counter Electrodes for Dye-Sensitized Solar Cells

机译:染料敏化太阳能电池碳基对电极颗粒聚集的超声波剥离

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摘要

Low-cost carbon materials (carbon black and graphite power) were applied as substitution of platinum (Pt) in counter electrodes (CEs) for dye-sensitized solar cells (DSSCs). Three fabrication methods, such as ball-milled, pulp-refined, and ultrasonic-crushed, were applied to remove the particle aggregation in the carbon pastes. Then the carbon based pastes were printed on fluorine-doped transparent conducting oxide (FTO) glasses, used as the CEs for DSSCs. Under illumination of 100 mW/cm(2), DSSCs with ultrasonic-crushed CEs (U-CEs) show an energy conversion efficiency of 3.57%, which reach to 65.38% of that with conventional sputtered platinum CEs (5.46%). In addition, U-CEs exhibit a higher catalytic activity and a faster charge transfer rate toward the reduction of I-3(-) to I-.
机译:将低成本的碳材料(炭黑和石墨功率)应用于染料敏化太阳能电池(DSSCs)的反电极(CES)中的铂(Pt)取代。 施加三种制造方法,例如球磨,纸浆精制和超声粉碎,以除去碳浆料中的颗粒聚集。 然后在氟掺杂的透明导电氧化物(FTO)玻璃上印刷基于碳的糊状物,用作DSSCs的CES。 在100mW / cm(2)的照明下,具有超声碎裂的CES(U-CES)的DSSCs显示出3.57%的能量转换效率,其达到常规溅射铂CES(5.46%)的65.38%。 此外,U-CES表现出更高的催化活性和更快的电荷转移率朝向I-减少I-3( - )。

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