4.8 Article

Screen-Printed Washable Electronic Textiles as Self-Powered Touch/Gesture Tribo-Sensors for Intelligent Human-Machine Interaction

期刊

ACS NANO
卷 12, 期 6, 页码 5190-5196

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.8b02477

关键词

electronic textiles; washable; self-powered; human-machine interaction

资金

  1. Beijing Natural Science Foundation [2182014]
  2. National Natural Science Foundation of China (NSFC) [51503005, 21703010, 21274006]
  3. National Key RAMP
  4. D Project from Minister of Science and Technology [2016YFA0202702, 2016YFA0202703, 2016YFA0202704]
  5. Programs for Beijing Science and Technology Leading Talent [Z161100004916168]
  6. Beijing Hundred, Thousand and Ten Thousand Talent Project [110403000402]
  7. General Program of Science and Technology Development Project of Beijing Municipal Education Commission of China [SQKM201710012004]
  8. Beijing Institute of Fashion Technology [BIFTQG201801]
  9. Thousands Talents Program, China

向作者/读者索取更多资源

Multifunctional electronic textiles (E-textiles) with embedded electric circuits hold great application prospects for future wearable electronics. However, most E-textiles still have critical challenges, including air permeability, satisfactory washability, and mass fabrication. In this work, we fabricate a washable E-textile that addresses all of the concerns and shows its application as a self-powered triboelectric gesture textile for intelligent human-machine interfacing. Utilizing conductive carbon nanotubes (CNTs) and screen-printing technology, this kind of E-textile embraces high conductivity (0.2 k Omega/sq), high air permeability (88.2 mm/s), and can be manufactured on common fabric at large scales. Due to the advantage of the interaction between the CNTs and the fabrics, the electrode shows excellent stability under harsh,mechanical deformation and even after being washed. Moreover, based on a single-electrode mode triboelectric nanogenerator and electrode pattern design, our E-textile exhibits highly sensitive touch/gesture sensing performance and has potential applications for human-machine interfacing.

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