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      Highly Sensitive, Rugged, and Wearable Fabric Strain Sensor Based on Graphene Clad Polyester Knitted Elastic Band for Human Motion Monitoring

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      https://www.riss.kr/link?id=O83509671

      • 저자
      • 발행기관
      • 학술지명
      • 권호사항
      • 발행연도

        2019년

      • 작성언어

        -

      • Online ISSN

        2196-7350

      • 등재정보

        SCOPUS;SCIE

      • 자료형태

        학술저널

      • 수록면

        n/a-n/a   [※수록면이 p5 이하이면, Review, Columns, Editor's Note, Abstract 등일 경우가 있습니다.]

      • 구독기관
        • 전북대학교 중앙도서관  
        • 성균관대학교 중앙학술정보관  
        • 부산대학교 중앙도서관  
        • 전남대학교 중앙도서관  
        • 제주대학교 중앙도서관  
        • 중앙대학교 서울캠퍼스 중앙도서관  
        • 인천대학교 학산도서관  
        • 숙명여자대학교 중앙도서관  
        • 서강대학교 로욜라중앙도서관  
        • 충남대학교 중앙도서관  
        • 한양대학교 백남학술정보관  
        • 이화여자대학교 중앙도서관  
      • ⓒ COPYRIGHT THE BRITISH LIBRARY BOARD: ALL RIGHT RESERVED
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      다국어 초록 (Multilingual Abstract)

      Smart electronic textiles are gaining a lot of importance in the field of flexible and wearable devices because of their lightweight, flexibility, deformability, and facile interaction with human skin. Herein, a simple, inexpensive, and scalable dip...

      Smart electronic textiles are gaining a lot of importance in the field of flexible and wearable devices because of their lightweight, flexibility, deformability, and facile interaction with human skin. Herein, a simple, inexpensive, and scalable dip‐dry‐reduce approach method is reported to fabricate a flexible strain sensor using polyester knitted elastic band (PEB) as the platform material which is coated with reduced graphene oxide, and its potential applications are demonstrated in detecting both the subtle and large‐scale deformations of the human body. PEB is made by knitting polyester yarn around a series of inner rubber cores, which makes it very versatile, lightweight, and shrink and wear resistant. The strain sensor can detect the small strains down to 0.2% with high sensitivity/gauge factor (GF) of 30 within in a strain range of 0–1%, and also shows excellent performance in terms of sensitivity (GF of 34 and 5 within in a strain range of 0–20%, 20–50%, respectively), negligible drift, stability, and durability over 6000 cycles. Moreover, the strain sensor can sense and record large‐scale human body motion even under water‐immersed condition and also exhibits negative temperature coefficient effect with a temperature coefficient of resistance of 0.677%°C−1.
      The reduced graphene oxide clad polyester knitted elastic band sensor exhibits high gauge factor of 30 and 34 within the small and large strain range, respectively and detects tiny strains down to 0.2%. The proposed sensor shows excellent performance in terms of negligible drift, stability, durability, and repeatability and detects a range of human motions even under water‐immersed condition with excellent stability and reliability.

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