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Enhanced Performance of Dye Sensitized Solar Cells Utilizing Platinum Electrodeposit Counter Electrodes

机译:利用铂电沉积计数器电极增强染料敏化太阳能电池的性能

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摘要

Enhanced performance was observed for dye-sensitized solar cells (DSSCs) utilizing counter electrodes based on Pt electrodeposits compared to counter electrodes based on sputtered Pt. Scanning electron microscopy of Pt electrodeposits revealed that the use of an initial cathodic overpotential pulse followed by steady electrodeposition at a mild cathodic potential yielded ∼40nm particles, compared to ∼600nm particles when no such pulse was used. Cyclic voltammetry and electrochemical impedance spectroscopy (EIS) of electrode materials suggested that Pt electrodeposits would give enhanced performance as DSSC counter electrodes compared to sputtered Pt, and this was confirmed by device testing. EIS characterization of DSSCs under illumination revealed that Pt electrodeposit counter electrodes were found to be more catalytically stable compared to sputtered Pt. The best counter electrode was based on Pt electrodeposited using an initial cathodic overpotential pulse and demonstrated charge-transfer resistance [RCT(Pt)]values of 0.6 and 0.7Ωcm2 within a symmetrical Pt/I−3/I−/Pt cell and within a DSSC, respectively.
机译:与基于溅射PT的反电极相比,利用基于PT电沉积的基于PT电沉积的反电极进行增强的性能。扫描电子显微镜的PT电吞源透视显示,使用初始阴极整向性脉冲随后在温和的阴极潜在的稳定电沉积时产生〜40nm颗粒,而当没有使用这种脉冲时与〜600nm颗粒相比。电极材料的循环伏安和电化学阻抗光谱(EIS)表明PT电源与DSSSSSC计数器相比,与溅射的PT相比,PT电源将提供增强的性能,并且通过装置测试确认这一点。在照明下的DSSCs的EIS表征显示,与溅射的Pt相比,发现PT电沉积计数器对电极更催化稳定。最佳的对电极基于使用初始阴极整向性脉冲的PT电沉积,并在对称的Pt / I-3 / I-/ Pt细胞内并在a内显示为0.6和0.7Ωcm2的电荷转移电阻[RCT(Pt)值。分别为DSSC。

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