| Literature DB >> 27659951 |
Phong Tran Hoang1, Nicolas Salazar1, Thomas Nolan Porkka1, Kunal Joshi1, Tao Liu1, Tarik J Dickens2, Zhibin Yu3.
Abstract
We report highly sensitive and reliable strain sensors based on silver nanoparticle (AgNP) and carbon nanotube (CNT) composite thin films. The CNT/AgNP was prepared by a screen printing process using a mixture of a CNT paste and an AgNP ink. It is discovered that the sensitivity of such sensors are highly dependent on the crack formation in the composites. By altering the substrate use and the relative ratios of AgNPs and CNTs, the formation and propagation of cracks can be properly engineered, leading to piezoresistive strain sensors with enhanced sensitivity and robustness.Entities:
Keywords: Carbon nanotubes; Composites; Crack; Piezoresistive; Silver nanoparticles; Strain sensors
Year: 2016 PMID: 27659951 PMCID: PMC5033798 DOI: 10.1186/s11671-016-1626-z
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1A schematic of the CNT-AgNP thin film fabrication process
Fig. 2The SEM images of the CNT-AgNP thin films with CNT loading at 0 wt.% (a, e), 70 wt.% (b, f), 95 wt.% (c, g) deposited on PDMS/PI substrate, and 70 wt.% (d, h) deposited on PI substrate. Scale bar in a–d is 200 μm and in e–h is 3 μm
Fig. 3Sheet resistance of CNT-AgNP composites at different CNT paste concentration on PDMS/PI and PI substrate
Fig. 4Top: evaluation of the electrical resistance and piezoresistive behavior of the CNT-AgNP thin films. a Piezoresistive response of the wt.% 70 samples with and without PDMS. b Gauge factors of CNT-AgNP sensor at different CNT paste concentration with and without PDMS. c The schematic illustration of the mechanism of piezoresistive behavior of CNT-AgNP thin film
Fig. 5a The piezoresistive response of the CNT-AgNP thin film deposited on PDMS/PI with CNT loading of 70 wt.% under 500 cycles of a sinusoidal tensile test (0.5 % in amplitude, 0.05 Hz in frequency). b, c The surface morphologies of the same sample by SEM imaging before and after 500 cycles