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首页> 外文期刊>Polymer engineering and science >In Situ Oxidative Polymerization of Polyaniline Counter Electrode on ITO Conductive Glass Substrate
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In Situ Oxidative Polymerization of Polyaniline Counter Electrode on ITO Conductive Glass Substrate

机译:ITO导电玻璃基板上聚苯胺对电极的原位氧化聚合

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摘要

Polyaniline (PANI) electrode was synthesized on a conducting indium tin oxide glass by in situ oxidative polymerization to construct a low production cost counter electrode of dye-sensitized solar cell (DSSC). The scanning electron microscopy image showed that PANI electrode was a porous state with the particles diameter in 20-30 nm. The cyclic voltammogram measurement revealed that PANI electrode had smaller charge transfer resistance and higher electrocatalytic activity for I_3~-/I~- redox reaction. The Brunauer-Emmett-Teller (BET) surface area of PANI was high to 53.114 m~2/g, and the high surface area of PANI electrode benefited for the absorption of electrolyte. Finally, we compared the photoelectric properties of DSSC using the PANI counter electrode and platinized counter electrode. The results indicated the efficiency of DSSC with PANI electrode reached 2.64%, which was higher than that with platinized electrode (1.75%). Therefore, the PANI counter electrode with excellent catalytic performance is a potential substitute for platinized electrode to save cost of DSSC.
机译:通过导电氧化铟锡玻璃原位氧化聚合合成聚苯胺(PANI)电极,构建了染料敏化太阳能电池(DSSC)的低成本生产对电极。扫描电子显微镜图像显示,PANI电极为多孔状态,粒径为20-30nm。循环伏安法测定表明,PANI电极对I_3〜-/ I〜-氧化还原反应具有较小的电荷转移阻力和较高的电催化活性。 PANI的Brunauer-Emmett-Teller(BET)表面积高达53.114 m〜2 / g,PANI电极的高表面积有利于电解质的吸收。最后,我们比较了使用PANI对电极和镀铂对电极的DSSC的光电性能。结果表明,PANI电极的DSSC效率达到2.64%,高于镀铂电极的1.75%。因此,具有优异催化性能的PANI对电极可作为镀铂电极的潜在替代品,从而节省DSSC的成本。

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