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In-situ electrochemically deposited polypyrrole nanoparticles incorporated reduced graphene oxide as an efficient counter electrode for platinum-free dye-sensitized solar cells

机译:原位电化学沉积的聚吡咯纳米颗粒结合了氧化石墨烯作为无铂染料敏化太阳能电池的有效对电极

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摘要

This paper reports a rapid and in-situ electrochemical polymerization method for the fabrication of polypyrrole nanoparticles incorporated reduced graphene oxide (rGO@PPy) nanocomposites on a ITO conducting glass and its application as a counter electrode for platinum-free dye-sensitized solar cell (DSSC). The scanning electron microscopic images show the uniform distribution of PPy nanoparticles with diameter ranges between 20 and 30 nm on the rGO sheets. The electrochemical studies reveal that the rGO@PPy has smaller charge transfer resistance and similar electrocatalytic activity as that of the standard Pt counter electrode for the I3/I redox reaction. The overall solar to electrical energy conversion efficiency of the DSSC with the rGO@PPy counter electrode is 2.21%, which is merely equal to the efficiency of DSSC with sputtered Pt counter electrode (2.19%). The excellent photovoltaic performance, rapid and simple fabrication method and low-cost of the rGO@PPy can be potentially exploited as a alternative counter electrode to the expensive Pt in DSSCs.
机译:本文报道了一种快速原位电化学聚合方法,该方法用于在ITO导电玻璃上掺入还原性氧化石墨烯(rGO @ PPy)纳米复合材料的聚吡咯纳米颗粒的制备及其在无铂染料敏化太阳能电池的对电极中的应用( DSSC)。扫描电子显微镜图像显示,直径在20至30μnm之间的PPy纳米颗粒在rGO板上的均匀分布。电化学研究表明,rGO @ PPy对I3 - / I -氧化还原反应的电荷转移阻力较小,并且具有与标准Pt对电极相似的电催化活性。带有rGO @ PPy对电极的DSSC的总体太阳能转化为电能的效率为2.21%,仅等于溅射Pt对电极的DSSC的效率(2.19%)。 rGO @ PPy的优异光伏性能,快速简单的制造方法以及低成本可以被潜在地用作DSSC中昂贵Pt的替代对电极。

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