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Efficient, stable, and flexible dye-sensitized solar cells based on nanocomposite gel electrolytes
Conference paper   Peer reviewed

Efficient, stable, and flexible dye-sensitized solar cells based on nanocomposite gel electrolytes

Hsin-Fang Lee, Yi-Ting Chua, Sz-Min Yang, Po-Ya Hsu, Fan-Yi Ouyang, Yung-Liang Tung and Ji-Jung Kai
Thin Solid Films, Vol.544, pp.301-306
01/10/2013

Abstract

Durability Flexible dye-sensitized solar cells Indium-tin-oxide coated polyethylene Nanocomposite gel electrolytes NaphthalateBinary ionic liquid
We have fabricated efficient and stable full-plastic dye-sensitized solar cells (DSCs) based on nanocomposite gel electrolytes. Different compositions of binder-free nanocrystalline TiO <sub>2</sub> pastes combined with mechanical compression technique were employed to prepare TiO <sub>2</sub> photoanodes on indium-doped tin oxide coated polyethylene naphthalate. The performance and durability of plastic-based DSCs using nanocomposite gel electrolytes which contain ceramic nanoparticles in 3-methoxypropionitrile (MPN)-based or binary ionic liquid electrolyteswere investigated. The results show that the compressed photoelectrode composed of commercial titanium powders P25 and 100 nm TiO <sub>2</sub> powders in conjunction with a TiO <sub>2</sub> solidified MPN-based nanocomposite gel electrolyte achieved an energy conversion efficiency of 6.49%. Moreover, the DSCs based on TiO <sub>2</sub> solidified bi-IL electrolyte were found to provide better durability than MPN-based nanocomposite gel electrolyte, whereas the efficiency maintained >97% of its original efficiency after 500 h of aging test under continuous light irradiation (100 mW cm <sup>-2</sup> ) at 60 °C. © 2013 Elsevier B.V. All rights reserved.

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