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Development of stretchable metallic glass electrodes.

Haijie Xian1, Lichao Li, Ping Wen

  • 1Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China. yanhui.liu@iphy.ac.cn hybai@iphy.ac.cn whw@iphy.ac.cn.

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Researchers developed stretchable metallic glass electrodes (MG-electrodes) for wearable electronics. These electrodes offer high conductivity and stability, overcoming limitations of previous stretchable materials.

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Area of Science:

  • Materials Science
  • Electronics Engineering

Background:

  • Wearable electronics require stretchable electrodes.
  • Current stretchable electrodes often compromise conductivity and exhibit resistance instability.

Purpose of the Study:

  • To develop stretchable metallic glass electrodes (MG-electrodes) with high conductivity and stability.
  • To improve the stretchability of MG-electrodes for advanced electronic applications.

Main Methods:

  • Depositing metallic glass (MG) films on pre-strained substrates to enhance stretchability.
  • Developing transparent MG-electrodes for uniaxial stretching.
  • Creating MG-electrodes optimized for biaxial stretching with improved conductivity.

Main Results:

  • Achieved significant improvement in electrode stretchability.
  • MG-electrodes demonstrated high electronic conductivity.
  • Exhibited negligible resistivity change (<5%) under stretching.
  • Showcased excellent corrosion resistance characteristic of metallic glasses.

Conclusions:

  • Developed novel stretchable metallic glass electrodes (MG-electrodes).
  • MG-electrodes offer a promising solution for stable, conductive interconnections in wearable devices.
  • Potential for use in harsh environments due to corrosion resistance.