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Electromechanical properties of fibers produced from randomly oriented SWCNT films by wet pulling technique

Sergey D. Shandakov, А. V. Kosobutsky, A. I. Vershinina, О. G. Sevostyanov, Irina M. Chirkova, D. М. Russakov, М. В. Ломакин, М. С. Рыбаков, Т. В. Глушкова, Е. А. Овчаренко, Maria A. Zhilyaeva, Albert G. Nasibulin

2021Materials Science and Engineering B16 citationsDOI

Topics & Concepts

Materials scienceComposite materialFiberEvaporationCarbon nanotubeToughnessSurface tensionElongationFolding enduranceNanotechnologyUltimate tensile strengthPolymerEthyl cellulosePhysicsQuantum mechanicsThermodynamicsCarbon Nanotubes in CompositesAdvanced Sensor and Energy Harvesting MaterialsMuscle activation and electromyography studies
Electromechanical properties of fibers produced from randomly oriented SWCNT films by wet pulling technique | Litcius