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Characteristics of Carbon Pyrolyzed from Table Sugar and Sucrose for Pt-less DSSC Counter Electrode

机译:无铂DSSC对电极由食糖和蔗糖热解碳的特性

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摘要

Platinum is the most effective counter electrode for use in dye-sensitized solar cells (DSSC). However, as platinum is very expensive, its price impedes its broad use as a DSSC counter electrode. As an alternative, carbon has been used for this purpose. In this study, carbon has been successfully pyrolyzed from the precursors of table sugar and sucrose through a chemical process, i.e. the dehydration of the precursors with sulfate acid followed by a pyrolysis process, and used as Pt-less counter electrode in a DSSC device. The as-synthesized carbon was characterized using X-ray diffraction (XRD) to obtain crystal structure information and a scanning electron microscope (SEM) equipped with energy dispersive X-ray spectroscopy (EDX) was employed to carry out morphological and compositional examination. The material activity and performance of the counter electrode in the DSSC device were analyzed using a semiconductor parameter analyzer through current–voltage characteristic curves (I-V). The results show that the precursors of table sugar without the addition of a metal catalyst and with initial heat treatment at 300°C for 1 hour, and of sucrose with a catalyst could produce carbon with a particle size of around 600–900 nm. The I-V curve characteristic of the DSSC device assembled using carbon produced from sucrose as a counter electrode resulted in a power conversion efficiency (PCE) of only 0.041%, whereas the DSSC device assembled using carbon produced from table sugar as a counter electrode exhibited a good performance with a PCE of 3.239%, almost equivalent to that of platinum paste with a PCE of 4.024%. This result is promising in terms of using a cheap source of carbon for the Pt-less counter electrode.
机译:铂是用于染料敏化太阳能电池(DSSC)的最有效的对电极。但是,由于铂非常昂贵,其价格阻碍了其广泛用作DSSC对电极。作为替代,碳已用于此目的。在这项研究中,碳已通过化学过程成功地从食用糖和蔗糖的前体热解,即先驱体先用硫酸酸脱水然后进行热解过程,并在DSSC装置中用作无Pt的反电极。使用X射线衍射(XRD)对合成后的碳进行表征,以获得晶体结构信息,并使用配备了能量色散X射线光谱仪(EDX)的扫描电子显微镜(SEM)进行形态和成分检查。使用半导体参数分析仪通过电流-电压特性曲线(I-V)分析了DSSC器件中对电极的材料活性和性能。结果表明,食用糖的前体在不添加金属催化剂的情况下,并在300°C进行了1个小时的初步热处理,而蔗糖的前体可以在催化剂中产生约600-900 nm的碳。以蔗糖为反电极生产的碳组装而成的DSSC装置的IV曲线特性仅为0.041%,而以食糖为碳对电极组装的DSSC装置表现出良好的功率转换效率(PCE)。 PCE为3.239%时的性能,几乎等同于PCE为4.024%的铂糊。就将便宜的碳源用于无Pt的对电极而言,这一结果很有希望。

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