Contact Us | Language: čeština English
Title: | Effect of pre-strain and KMnO4 oxidation of carbon nanotubes embedded in polyurethane on strain dependent electrical resistance of the composite | ||||||||||
Author: | Slobodian, Petr; Říha, Pavel; Olejník, Robert; Matyáš, Jiří | ||||||||||
Document type: | Peer-reviewed article (English) | ||||||||||
Source document: | Sensor Review. 2018, vol. 38, issue 2, p. 163-170 | ||||||||||
ISSN: | 0260-2288 (Sherpa/RoMEO, JCR) | ||||||||||
Journal Impact
This chart shows the development of journal-level impact metrics in time
|
|||||||||||
DOI: | https://doi.org/10.1108/SR-05-2017-0079 | ||||||||||
Abstract: | Purpose - The synergistic effect of functionalization of multi-walled carbon nanotubes (CNT) using KMnO4 oxidation and initial tensile deformation on the electrical resistance of nanotube network/polyurethane composite subjected to elongation was studied. Design/methodology/approach - Though the initial deformation irreversibly changed the arrangement of carbon nanotube network, subsequent cyclic elongation confirmed stable resistance values. The increased strain-dependent resistance of stimulated nanotube network/polyurethane composite was demonstrated by monitoring vibration of tambour leather after a bead impact and finger flexion. Findings - The results showed a tenfold composite resistance increase for the composite prepared from KMnO4 oxidized nanotubes, quantified by a so-called gauge factor, from a value of about 20 in comparison to the network prepared from pristine nanotubes. This is a substantial increase, which ranks the stimulated composite among materials with the highest electromechanical response. Originality/value - The results in this paper are new and have not been published yet. The paper combines different ideas which are developed together. It presents a new concept of synergistic effect of CNT oxidation and application of pre-strain simulation. Oxidation and pre-strain increases by several times the sensitivity of the tested composites which are predetermined for use as strain sensors of various sizes and shapes. © 2018 Emerald Publishing Limited. | ||||||||||
Full text: | https://www.emeraldinsight.com/doi/abs/10.1108/SR-05-2017-0079 | ||||||||||
Show full item record |