Close Menu
Indian Textile Journal
  • Home
  • Textile Machinery
    • Allied Equipment and Accessories
    • Automation
    • Dyeing, Processing & Finishing
    • Knitting
    • Printing
    • Spinning
    • Weaving
  • Tech Textiles
  • Sustainability
  • Resources
    • Trade Fair
    • Events
    • Videos
  • Interview & Opinion
  • Subscribe Now
  • Advertise
  • Digital
  • Apparels & Garments
  • Fibres & Raw Materials
  • Home Textiles
  • Industry Update
Facebook X (Twitter) YouTube LinkedIn
Indian Textile Journal
Epson
  • Home
  • Textile Machinery
    • Allied Equipment and Accessories
    • Automation
    • Dyeing, Processing & Finishing
    • Knitting
    • Printing
    • Spinning
    • Weaving
  • Tech Textiles
  • Sustainability
  • Resources
    • Trade Fair
    • Events
    • Videos
  • Interview & Opinion
  • Subscribe Now
  • Advertise
  • Digital
  • Apparels & Garments
  • Fibres & Raw Materials
  • Home Textiles
  • Industry Update
Indian Textile Journal
Home » Wearable cotton sensors developed
Spinning

Wearable cotton sensors developed

By December 2, 20161 Min Read
Share Facebook Twitter LinkedIn WhatsApp Copy Link

Conductive cotton fabrics have been developed into flexible wearable strain sensors. A team of scientists from the UK-based Cambridge University and Jiangnan University in China has used modified graphene to develop wearable cotton smart textiles.

Based on Cambridge Graphene Center’s Dr Felice Torrisi’s graphene ink chemistry for wearable electronics, the international team deposited the modified graphene on to cotton fabrics, using vacuum filtration. This process enabled modified graphene inks to adhere strongly to cotton fibers. Heat-treating the coated cotton fabrics enhanced the conductivity and made it durable even after several washes.

According to Dr Torrisi, using modified graphene inks make the process cheap and environmentally friendly and more importantly, the modified graphene is chemically compatible with cotton. Cotton strain sensors were able to detect up to 500 motion cycles even after ten wash cycles. According to researchers, this research can create new high performance wear, sports textiles and fashionable wearable electronic textiles.

The research, which has appeared in a recent issue of journal Carbon, is being commercialised by Cambridge University’ s commercialisation unit.

By: Seshadri Ramkumar, Texas Tech University, USA

Previous ArticlePath-breaking ITME opens
Next Article Trump’s TPP rejection to benefit Cambodia

Related Posts

Rieter’s COMPACT4 – A New Universal Solution for Compact Spinning

July 24, 2026

Rieter transforms with major man-made fibre acquisition

July 17, 2026

Seven years of proven performance: Consistent effluent quality, stable flux & permeability, and exceptional operational reliability

June 25, 2026
Recent Posts
  • From products to solutions: Key takeaways from the TAI seminar on technical textiles
  • Vero Moda brings a century of Marilyn Monroe to India in a special capsule collection via Myntra
  • Beyond the Curve redefines inclusive style for modern curvy consumers
  • Vipul Organics’ ADIMEM Technologies acquires advanced membrane manufacturing platform from Aquaporin, Denmark
  • Maharashtra targets global textile leadership with 5F vision
  • Textiles Ministry reviews research initiatives for industry growth
  • TechnoSport appoints Aditya Gadiyar as CMO to drive hypergrowth
  • Trident Group clinches best in-house Studio Award for a record fifth time at IBDA 2026
Facebook X (Twitter) YouTube LinkedIn
  • About us
  • Contact us
  • Privacy Policy
  • Terms and Conditions

SISTER PUBLICATIONS

Construction World Equipment India Industrial Product Finder Infrastructure Today

© 2026 Indian Textile Journal. All Rights Reserved.

Type above and press Enter to search. Press Esc to cancel.