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Influence of matching solubility parameter of polymer matrix and CNT on electrical conductivity of CNT/rubber composite.


ABSTRACT: We report a general approach to fabricate elastomeric composites possessing high electrical conductivity for applications ranging from wireless charging interfaces to stretchable electronics. By using arbitrary nine kinds of rubbers as matrices, we experimentally demonstrate that the matching the solubility parameter of CNTs and the rubber matrix is important to achieve higher electrical conductivity in CNT/rubber composite, resulting in continuous conductive pathways leading to electrical conductivities as high as 15 S/cm with 10 vol% CNT in fluorinated rubber. Further, using thermodynamic considerations, we demonstrate an approach to mix CNTs to arbitrary rubber matrices regardless of solubility parameter of matrices by adding small amounts of fluorinated rubber as a polymeric-compatibilizer of CNTs. We thereby achieved electrical conductivities ranging from 1.2 to 13.8 S/cm (10 vol% CNTs) using nine varieties of rubber matrices differing in chemical structures and physical properties. Finally, we investigated the components of solubility parameter of CNT by using Hansen solubility parameters, these findings may useful for controlling solubility parameter of CNTs.

SUBMITTER: Ata S 

PROVIDER: S-EPMC4248280 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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Influence of matching solubility parameter of polymer matrix and CNT on electrical conductivity of CNT/rubber composite.

Ata Seisuke S   Mizuno Takaaki T   Nishizawa Ayumi A   Subramaniam Chandramouli C   Futaba Don N DN   Hata Kenji K  

Scientific reports 20141201


We report a general approach to fabricate elastomeric composites possessing high electrical conductivity for applications ranging from wireless charging interfaces to stretchable electronics. By using arbitrary nine kinds of rubbers as matrices, we experimentally demonstrate that the matching the solubility parameter of CNTs and the rubber matrix is important to achieve higher electrical conductivity in CNT/rubber composite, resulting in continuous conductive pathways leading to electrical condu  ...[more]

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