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Highly durable and flexible dye-sensitized solar cells fabricated on plastic substrates: PVDF-nanofiber-reinforced TiO2 photoelectrodes

Cited 85 time in Web of Science Cited 87 time in Scopus
Authors

Li, Yuelong; Lee, Doh-Kwon; Kim, Jin Young; Kim, BongSoo; Park, Nam-Gyu; Kim, Kyungkon; Shin, Joong-Ho; Choi, In Suk; Ko, Min Jae

Issue Date
2012-10
Publisher
Royal Society of Chemistry
Citation
Energy & Environmental Science, Vol.5 No.10, pp.8950-8957
Abstract
In this study, we developed a novel nanostructured polymer nanofiber/TiO2 nanoparticle composite photoelectrode with high bendability by a spray-assisted electrospinning method. The composite film is used as the photoelectrode in plastic dye-sensitized solar cells (DSCs). The polymer/TiO2 composite photoelectrode has a structure similar to that of a fiber-reinforced composite; the matrix of the composite photoelectrode contains TiO2 nanoparticles, and PVDF nanofibers are embedded in this matrix. Compared to conventional DSCs, composite-based DSCs show outstanding bending stability because the polymer nanofibers prevent delamination of the electrode by relieving the external stress and effectively retarding crack generation and propagation. Moreover, the efficiency of the cell containing composite electrodes is comparable to that of a cell containing only TiO2, suggesting that the proposed PVDF-nanofiber-reinforced photoelectrode is a promising candidate for a bendable photoelectrode in high-efficiency flexible plastic DSCs.
ISSN
1754-5692
URI
https://hdl.handle.net/10371/203320
DOI
https://doi.org/10.1039/c2ee21674d
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  • College of Engineering
  • Department of Materials Science & Engineering
Research Area High Temperature Alloys, High Strength , Nano Mechanics and Nano Structure Design for Ultra Strong Materials, Shape and Pattern Design for Engineering Materials

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