Nickel incorporated carbon nanotube/nanofiber composites as counter electrodes for dye-sensitized solar cells

作者:Joshi Prakash; Zhou Zhengping; Poudel Prashant; Thapa Amit; Wu Xiang Fa*; Qiao Qiquan
来源:Nanoscale, 2012, 4(18): 5659-5664.
DOI:10.1039/c2nr31379k

摘要

A nickel incorporated carbon nanotube/nanofiber composite (Ni-CNT-CNF) was used as a low cost alternative to Pt as counter electrode (CE) for dye-sensitized solar cells (DSCs). Measurements based on energy dispersive X-rays spectroscopy (EDX) showed that the majority of the composite CE was carbon at 88.49 wt%, while the amount of Ni nanoparticles was about 11.51 wt%. Measurements based on electrochemical impedance spectroscopy (EIS) showed that the charge transfer resistance (R-ct) of the Ni-CNT-CNF composite electrode was 0.71 Omega cm(2), much lower than that of the Pt electrode (1.81 Omega cm(2)). Such a low value of R-ct indicated that the Ni-CNT-CNF composite carried a higher catalytic activity than the traditional Pt CE. By mixing with CNTs and Ni nanoparticles, series resistance (R-s) of the Ni-CNT-CNF electrode was measured as 5.96 Omega cm(2), which was close to the R-s of 5.77 Omega cm(2) of the Pt electrode, despite the significant difference in their thicknesses: similar to 22 mu m for Ni-CNT-CNF composite, while similar to 40 nm for Pt film. This indicated that use of a thick layer (tens of microns) of Ni-CNT-CNF counter electrode does not add a significant amount of resistance to the total series resistance (R-s (tot)) in DSCs. The DSCs based on the Ni-CNT-CNF composite CEs yielded an efficiency of 7.96% with a short circuit current density (J(sc)) of 15.83 mA cm(-2), open circuit voltage (V-oc) of 0.80 V, and fill factor (FF) of 0.63, which was comparable to the device based on Pt, that exhibited an efficiency of 8.32% with J(sc) of 15.01 mA cm(-2), V-oc of 0.83, and FF of 0.67.

  • 出版日期2012