Hierarchical porous nano-carbon composite: Effective fabrication and application in dye sensitized solar cells

A nano-carbon composite with unique hierarchical porous structure has been effectively fabricated as dye sensitized solar cell (DSSC) counter electrode material by a simple and low-cost way. The fabrication process only employs spin-coating and then combustion by using sodium lauryl sulfate as a fac...

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Veröffentlicht in:Journal of power sources 2013-05, Vol.229, p.102-111
Hauptverfasser: Zeng, Wei, Fang, Guojia, Wang, Xueqi, Zheng, Qiao, Li, Borui, Huang, Huihui, Tao, Hong, Liu, Nishuang, Xie, Weijun, Zhao, Xingzhong, Zou, Dechun
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Sprache:eng
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Zusammenfassung:A nano-carbon composite with unique hierarchical porous structure has been effectively fabricated as dye sensitized solar cell (DSSC) counter electrode material by a simple and low-cost way. The fabrication process only employs spin-coating and then combustion by using sodium lauryl sulfate as a facile pore-forming precursor. The generated composite reveals high catalytic ability coupled with low electrical resistance owing to its unique structure. The power conversion efficiency of the resulting DSSC device reaches 6.5%, which is close to 6.6% of the referenced DSSC by using platinum as the counter electrode. A mass transfer model is built and it convincingly demonstrates that the composite architecture is beneficial to carrier transport. The fabrication strategy is simple and effective, and it has a great potential to be applied to DSSC fabrication on a large scale. [Display omitted] ► The dye sensitized solar cell owns relatively high efficiency. ► The fabrication method is greatly effective and low-cost. ► A facile pore-forming precursor is employed. ► The counter electrode owns unique hierarchical porous structure. ► A theoretical simulation convincingly demonstrates the experimental results.
ISSN:0378-7753
1873-2755
DOI:10.1016/j.jpowsour.2012.12.021