To subscribe, advertise or contribute articles to smartmanufacturingtoday.com contact publisher@xtra.co.nz

  • Home
  • Newswire
  • Contact us
  • Advertise
  • Subscribe
  • About
Smart Manufacturing Today
Your source of info
  • Home
  • Additive Manufacturing
  • AI
  • Big Data
  • Business
  • The Circular Economy
  • Computer Integrated Manufacturing
  • Developments
  • Events
  • Featured
  • Future Technologies
  • Internet of Things
  • Latest News
  • Manufacturing Software
  • Manufacturing Technology
  • Product Design
  • Robotics
  • PLM & CAD/CAM
  • Profiles
  • Supply Chain
  • Sustainability
  • The Creative Class
  • Workshop Tools

News Ticker

A global treaty to limit plastic pollution is within reach
SMB manufacturers are cutting costs without cutting corners
Smarter growth, lower risk: Rethinking how new factories are built
  Countries successfully growing their manufacturing – and what they are doing right
BW Converting launches e-learning platform for enhanced customer training
Manufacturing and Production Industry is Fighting a 41% Increase in Ransomware Attacks over Four Years
CT Semiconductor Inaugurates ATP Chip Semiconductor Training Center
Energy Experts on AI Tools for Building’s Sustainability:“Triple Win for Businesses, People, and Planet”

Fabrics detect dangerous gases

Researchers, from the Electronics and Telecommunications Research Institute and Konkuk University in the Republic of Korea, coated cotton and polyester yarn with a nanoglue called bovine serum albumin (BSA). The yarns were then wrapped in graphene oxide sheets.

Graphene is an incredibly strong one-atom-thick layer of carbon that is known for its excellent conductive properties of heat and electricity.

The graphene sheets stuck very well to the nanoglue: so much so that further testing showed the fabrics retained their electrical conducting properties after 1,000 consecutive cycles of bending and straightening and ten washing tests with various chemical detergents. Finally, the graphene oxide yarns were exposed to a chemical reduction process, which involves the gaining of electrons.

The reduced-graphene-oxide-coated materials were found to be particularly sensitive to detecting nitrogen dioxide, a pollutant gas commonly found in vehicle exhaust that also results from fossil fuel combustion. Prolonged exposure to nitrogen dioxide can be dangerous to human health, causing many respiratory-related illnesses.

Exposure of these specially-treated fabrics to nitrogen dioxide led to a change in the electrical resistance of the reduced graphene oxide.

The fabrics were so sensitive that 30 minutes of exposure to 0.25 parts per million of nitrogen dioxide (just under five times above the acceptable standard set by the U.S. Environmental Protection Agency) elicited a response. The fabrics were three times as sensitive to nitrogen dioxide in air compared to another reduced graphene oxide sensor previously prepared on a flat material.

The new technology, according to the researchers, can be immediately adopted in related industries because the coating process is a simple one, making it suitable for mass production. It would allow outdoor wearers to receive relevant information about air quality. The materials could also be incorporated with air-purifying filters to act as “smart filters” that can both detect and filter harmful gas from air.

“This sensor can bring a significant change to our daily life since it was developed with flexible and widely used fibres, unlike the gas sensors invariably developed with the existing solid substrates,” says Dr Hyung-Kun Lee, who led this research initiative. The study was published in Scientific Reports.

Share this:

Related Posts

Tapway

Developments /

Tapway expands into Indonesia

Winnie Courtene-Jones Plastic pollution

Developments /

A global treaty to limit plastic pollution is within reach

ESG 1

Developments /

BLT’s 2024 ESG Highlights: Advancing Low-Carbon Manufacturing with Additive Innovation

‹ Single step process transforms carbon dioxide into star-shaped molecules› Global power generation shortfall in 2030

28th August 2025

Recent Posts

  • Tapway expands into Indonesia
  • A global treaty to limit plastic pollution is within reach
  • BLT’s 2024 ESG Highlights: Advancing Low-Carbon Manufacturing with Additive Innovation
  • The Genius Myth: A Curious History of a Dangerous Idea
  • Powering remanufacturing with AI

Categories

  • 3D Printing
  • Additive Manufacturing
  • AI
  • Big Data
  • Business
  • Computer Integrated Manufacturing
  • Developments
  • Events
  • Featured
  • Future Technologies
  • Internet of Things
  • Latest News
  • Manufacturing Software
  • Manufacturing Technology
  • PLM & CAD/CAM
  • Product Design
  • Robotics
  • Supply Chain
  • Sustainability
  • The Circular Economy
  • The Creative Class
  • Uncategorized
  • Workshop Tools

Back to Top

  • Home
  • Additive Manufacturing
  • AI
  • Big Data
  • Business
  • The Circular Economy
  • Computer Integrated Manufacturing
  • Developments
  • Events
  • Featured
  • Future Technologies
  • Internet of Things
  • Latest News
  • Manufacturing Software
  • Manufacturing Technology
  • Product Design
  • Robotics
  • PLM & CAD/CAM
  • Profiles
  • Supply Chain
  • Sustainability
  • The Creative Class
  • Workshop Tools

To subscribe, advertise or contribute articles to smartmanufacturingtoday.com contact publisher@xtra.co.nz

(c) Smart Manufacturing Today, 2025