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Cited 85 time in webofscience Cited 89 time in scopus
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Exceptional electromagnetic interference shielding and microwave absorption properties of room temperature synthesized polythiophene thin films with double negative characteristics (DNG) in the Ku-band region

Authors
Kulkarni, GopalKandesar, PriyankaVelhal, NinadPhadtare, VarshaJatratkar, AvirajShinde, S. K.Kim, Dae-YoungPuri, Vijaya
Issue Date
1-Jan-2019
Publisher
ELSEVIER SCIENCE SA
Keywords
Conducting polymers; Polythiophene (PTh); Metamaterial; Microwave absorption; EMI shielding; Relative permittivity and permeability
Citation
CHEMICAL ENGINEERING JOURNAL, v.355, pp 196 - 207
Pages
12
Indexed
SCI
SCIE
SCOPUS
Journal Title
CHEMICAL ENGINEERING JOURNAL
Volume
355
Start Page
196
End Page
207
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/8500
DOI
10.1016/j.cej.2018.08.114
ISSN
1385-8947
1873-3212
Abstract
Negative refractive index (NRI) metamaterials with simultaneously negative permittivity and negative permeability have recently experienced tremendous fundamental and practical interest due to their unique electromagnetic properties. In this work, polythiophene (PTh) thin films were synthesized using an in situ chemical oxidative polymerization route. The double negative characteristics (negative permittivity and permeability) appeared simultaneously in the as-prepared PTh thin films. The structural and microstructural characterizations of as-deposited PTh thin films were examined through different techniques including XRD, FESEM, TEM, XPS and FT-IR spectroscopy. Furthermore, microwave absorption properties such as reflection loss (RL), shielding effectiveness (SE) of the PTh thin films with varying monomer concentration were also investigated. The morphological investigation shows that the unique porous microstructure of the PTh fibers has a dramatic impact in the enhancement kinetics of the microwave absorption performance. The PTh fibers deposited at 0.2 M concentration of thiophene showed minimum reflection loss (RL) of -44.24 dB (99.9% microwave absorption) at 17.59 GHz frequency, with a total shielding effectiveness of -18 dB at 16.3 GHz with only 5.31 microns of matching thickness. The PTh thin films exhibit exceptional microwave absorption ability at a fairly thin thickness and show a greater effective absorption bandwidth (RL < -10 dB) in the Ku-band region; these findings definitely pave the way to explore the study of different conducting polymer materials for utilization in EMI-shielding applications.
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