
pmid: 24648169
A stretchable, wearable dye-sensitized solar-cell textile is developed from elastic, electrically conducting fiber as a counter electrode and spring-like titanium wire as the working electrode. Dyesensitized solar cells are demonstrated with energy-conversion efficiencies up to 7.13%. The high energy-conversion efficiencies can be well maintained under stretch by 30% and after stretch for 20 cycles.
Miniaturization, Nanotubes, Carbon, Textiles, Equipment Design, Equipment Failure Analysis, Electric Power Supplies, Energy Transfer, Elastic Modulus, Solar Energy, Rubber, Electrodes
Miniaturization, Nanotubes, Carbon, Textiles, Equipment Design, Equipment Failure Analysis, Electric Power Supplies, Energy Transfer, Elastic Modulus, Solar Energy, Rubber, Electrodes
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