ACS Nano · 2014 · 258 citations · 43 references
Materials ScienceNanofiberCore/sheath YarnSmart TextileEngineeringHybrid CapacitorNanomaterialsWearable Electronic TextilesMechanical EngineeringSupercapacitorElectrochemical Double Layer CapacitorLong Linear SupercapacitorsNanotubesCarbon NanotubesLinear Supercapacitors
Linear (fiber or yarn) supercapacitors have demonstrated remarkable cyclic electrochemical performance as power source for wearable electronic textiles. The challenges are, first, to scale up the linear supercapacitors to a length that is suitable for textile manufacturing while their electrochemical performance is maintained or preferably further improved and, second, to develop practical, continuous production technology for these linear supercapacitors. Here, we present a core/sheath structured carbon nanotube yarn architecture and a method for one-step continuous spinning of the core/sheath yarn that can be made into long linear supercapacitors. In the core/sheath structured yarn, the carbon nanotubes form a thin surface layer around a highly conductive metal filament core, which serves as current collector so that charges produced on the active materials along the length of the supercapacitor are transported efficiently, resulting in significant improvement in electrochemical performance and scale up of the supercapacitor length. The long, strong, and flexible threadlike supercapacitor is suitable for production of large-size fabrics for wearable electronic applications.
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Jianyong Ouyang, Chih‐Wei Chu, Fang‐Chung Chen et al. · Advanced Functional Materials · 2005 · 931 citations · Full text
Thin, Flexible Secondary Li-Ion Paper Batteries
Liangbing Hu, Hui Wu, Fabio La Mantia et al. · ACS Nano · 2010 · 861 citations