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A significant improvement in the electrocatalytic stability of N-doped graphene nanosheets used as a counter electrode for [Co(bpy)3]3+/2+ based porphyrin-sensitized solar cells
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A significant improvement in the electrocatalytic stability of N-doped graphene nanosheets used as a counter electrode for [Co(bpy)3]3+/2+ based porphyrin-sensitized solar cells

Peng Zhai, Chih-Chi Lee, Ya-Huei Chang, Chang Liu, Tzu-Chien Wei and Shien-Ping Feng
ACS Applied Materials and Interfaces, Vol.7(3), pp.2116-2123
28/01/2015

Abstract

cobalt mediator electrocatalytic reliability N-doped graphene porphyrin-sensitized solar cells surface wettability
A significant improvement in efficiency is achieved for porphyrin (YD2-o-C8) based dye-sensitized solar cells, coupled with [Co(bpy) <sub>3</sub> ] <sup>3+/2+</sup> mediator electrolyte. However, the poison of the counter electrode (CE) by the [Co(bpy) <sub>3</sub> ] <sup>3+/2+</sup> mediator remains a significant barrier to producing a reliable high-performance device. In this paper, nitrogen-doped graphene nanosheets (NG) are produced using a low-cost solution-based process and are used as the CE for [Co(bpy) <sub>3</sub> ] <sup>3+/2+</sup> based porphyrin-sensitized solar cells. These produce significantly better electrocatalytic activity than the commonly used Pt CE. The superior performance is a result of the increased number of catalytic sites and the wettable surface that is caused by the substitution of pyridinic and pyrrolic N into the carbon-conjugated lattice. To the authors' best knowledge, the significantly improved cycling stability (>1000 times) of NG CE for [Co(bpy) <sub>3</sub> ] <sup>3+/2+</sup> redox complexes is demonstrated for the first time.

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