| Literature DB >> 25977659 |
Igor B Olenych1, Olena I Aksimentyeva2, Liubomyr S Monastyrskii1, Yulia Yu Horbenko2, Lidia I Yarytska3.
Abstract
ABSTRACT: In this work, we have prepared film sensor elements based on a hybrid system poly(3,4-ethylenedioxythiophene)-porous silicon nanocrystals-carbon nanotubes on flexible polymer substrates. Our FTIR spectroscopy-based studies for the molecular structure of the materials obtained suggest some interaction of their components in the hybrid layer. The influence of adsorption of water molecules on the conductivity and capacitance of the hybrid composites has been investigated in the temperature range of 20°C to 40°C. We have detected essential changes in the electrical conductivity and capacitance which depend on the humidity of the surrounding atmosphere. For estimating the sensing properties of our composites, we have analyzed the sensing abilities of the hybrid systems and their dynamic characteristics. The hybrid composites as working materials for the sensors provide improved performance of the latter. In particular, the response time is reduced by 3 to 5 times. PACS: 73.63.-b, 73.61.Ph, 82.35.Np, 81.05.Rm.Entities:
Keywords: Carbon nanotubes; Composite film sensors; Poly(3,4-ethylenedioxythiophene); Porous silicon; Sensing ability
Year: 2015 PMID: 25977659 PMCID: PMC4406924 DOI: 10.1186/s11671-015-0896-1
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1FTIR spectra of silicon substrate, PEDOT:PSS, and hybrid PEDOT:PSS-PS-CNT films on the silicon substrate. Inset shows chemical formula of PEDOT:PSS.
Figure 2Resistance (а) and capacitance (b) of PEDOT:PSS-PS-CNT films as functions of the relative air humidity.
Figure 3Sensing abilities of resistive (а) and capacitive (b) sensors based on the PEDOT:PSS-PS-CNT films as functions of the relative air humidity.
Figure 4Responses of resistance (a) and capacitance (b) of the sensors based on PEDOT:PSS-PS-CNT films to the pulse of relative air humidity.