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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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 |
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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 |
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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 |
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https://scholarbank.nus.edu.sg/handle/10635/173968 |
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