Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy

10.1039/c6tc04849h

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Main Authors: Zhou, R, Li, P, Fan, Z, Du, D, Ouyang, J
Other Authors: MATERIALS SCIENCE AND ENGINEERING
Format: Article
Published: 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/173968
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spelling sg-nus-scholar.10635-1739682024-04-17T02:45:04Z Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy Zhou, R Li, P Fan, Z Du, D Ouyang, J MATERIALS SCIENCE AND ENGINEERING Biocompatibility Composite films Conducting polymers Graphene Physical therapy Polymers Styrene Tensile strain Wearable technology Electrical conductivity High thermal conductivity Intrinsically conductive polymers Low thermal conductivity Poly-3 ,4-ethylenedioxythiophene Polystyrene sulfonic acid Reduced graphene oxides (RGO) Waterborne polyurethanes Thermal conductivity 10.1039/c6tc04849h Journal of Materials Chemistry C 5 6 1544-1551 2020-09-02T06:43:23Z 2020-09-02T06:43:23Z 2017 Article Zhou, R, Li, P, Fan, Z, Du, D, Ouyang, J (2017). Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy. Journal of Materials Chemistry C 5 (6) : 1544-1551. ScholarBank@NUS Repository. https://doi.org/10.1039/c6tc04849h 20507534 https://scholarbank.nus.edu.sg/handle/10635/173968 Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Biocompatibility
Composite films
Conducting polymers
Graphene
Physical therapy
Polymers
Styrene
Tensile strain
Wearable technology
Electrical conductivity
High thermal conductivity
Intrinsically conductive polymers
Low thermal conductivity
Poly-3 ,4-ethylenedioxythiophene
Polystyrene sulfonic acid
Reduced graphene oxides (RGO)
Waterborne polyurethanes
Thermal conductivity
spellingShingle Biocompatibility
Composite films
Conducting polymers
Graphene
Physical therapy
Polymers
Styrene
Tensile strain
Wearable technology
Electrical conductivity
High thermal conductivity
Intrinsically conductive polymers
Low thermal conductivity
Poly-3 ,4-ethylenedioxythiophene
Polystyrene sulfonic acid
Reduced graphene oxides (RGO)
Waterborne polyurethanes
Thermal conductivity
Zhou, R
Li, P
Fan, Z
Du, D
Ouyang, J
Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
description 10.1039/c6tc04849h
author2 MATERIALS SCIENCE AND ENGINEERING
author_facet MATERIALS SCIENCE AND ENGINEERING
Zhou, R
Li, P
Fan, Z
Du, D
Ouyang, J
format Article
author Zhou, R
Li, P
Fan, Z
Du, D
Ouyang, J
author_sort Zhou, R
title Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
title_short Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
title_full Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
title_fullStr Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
title_full_unstemmed Stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
title_sort stretchable heaters with composites of an intrinsically conductive polymer, reduced graphene oxide and an elastomer for wearable thermotherapy
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/173968
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