Flexible high-energy Li-ion batteries with fast-charging capability

  • Park, Mi-Hee
  • Noh, Mijung
  • Lee, Sanghan
  • Ko, Minseong
  • Chae, Sujong
  • Sim, Soojin
  • Choi, Sinho
  • Kim, Hyejung
  • Nam, Haisol
  • Park, Soojin
  • Cho, Jaephil
Publication date
August 2014
Publisher
American Chemical Society (ACS)
ISSN
1530-6984
Journal
Nano Letters
Citation count (estimate)
59

Abstract

With the development of flexible mobile devices, flexible Li-ion batteries have naturally received much attention. Previously, all reported flexible components have had shortcomings related to power and energy performance. In this research, in order to overcome these problems while maintaining the flexibility, honeycomb-patterned Cu and Al materials were used as current collectors to achieve maximum adhesion in the electrodes. In addition, to increase the energy and power multishelled LiNi0.75Co 0.11Mn0.14O2 particles consisting of nanoscale V2O5 and LixV2O5 coating layers and a Li??Ni0.75-zCo0.11Mn 0.14VzO2 doping layer were used as the cathode-anode composite (denoted as PNG-AES) consisting of amorphous Si nanoparticles (<20 nm) loaded...

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