• DocumentCode
    161794
  • Title

    A novel creation of thread-based ammonia gas sensors for wearable wireless security system

  • Author

    Seesaard, Thara ; Seaon, Sasiprapa ; Khunarak, Chayanin ; Lorwongtragool, Panida ; Kerdcharoen, Teerakiat

  • Author_Institution
    Mater. Sci. & Eng. Programme, Mahidol Univ., Bangkok, Thailand
  • fYear
    2014
  • fDate
    14-17 May 2014
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    Thread-based gas sensor based on poly (styrenecomaleic acid) partial isobutyl/methyl mixed ester and multi-walled carbon nanotube (PSE/MWCNT) nanocomposite for NH3 detection has been designed and created from two simple processes; crochet and immersion (dip) coating processes. This new dimension of fabric-based gas sensors fabrication is suitable for integrating directly into the flexible substrates to be applied as wearable gas detection instruments such as gas-protective clothing, gas safety shoes and gas masks. Soft materials which do not irritate the wearer have been used for this sensor. This work opens a new perspective that overcomes the well-known limitation for creating a fabric-based gas sensor such as the complexity of the production process, high cost and high power consumption in operating. Thus it leads to an innovative integration between science and smart art. As a result, we can make a cheap wireless gas detector based on Xbee communication technology, with low power consumption. This sensor was tested for its selectivity and sensitivity performance toward several volatile compounds, namely ammonia, pyridine, acetic acid, ethanol and acetone. The results revealed that this sensor has higher sensitivity and specificity to NH3 than other gases. It is possible to monitor NH3 until it reaches a concentration of 5 ppm and also has the ability to recover as well.
  • Keywords
    ammonia; carbon nanotubes; coating techniques; flexible electronics; gas sensors; nanocomposites; nitrogen compounds; radio networks; telecommunication security; NH3; PSE/MWCNT; Xbee communication technology; acetic acid; acetone; crochet coating processes; ethanol; fabric-based gas sensor; flexible substrates; gas masks; gas safety shoes; gas-protective clothing; immersion coating processes; low power consumption; multi-walled carbon nanotube; nanocomposite; poly (styrenecomaleic acid) partial isobutyl/methyl mixed ester; pyridine; thread-based ammonia gas sensors; volatile compounds; wearable gas detection instruments; wearable wireless security system; wireless gas detector; Biomedical monitoring; Coatings; Gas detectors; Temperature sensors; Voltage measurement; Yarn; Ammonia gas sensor; Crochet techniques; Immersion (dip) coating techniques; Thread-based gas sensor; ZigBee;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2014 11th International Conference on
  • Conference_Location
    Nakhon Ratchasima
  • Type

    conf

  • DOI
    10.1109/ECTICon.2014.6839727
  • Filename
    6839727