2023
DOI: 10.1016/j.indcrop.2023.117109
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A highly strong PEDOT modified wood towards efficient electromagnetic interference shielding

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Cited by 7 publications
(3 citation statements)
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“…Accordingly, the complex permittivity real part was increased from 18.4 to 23.2, and the complex permittivity imaginary part was improved from 14 to 21.8. Polythiophene has also been applied to form EMI shielding materials due to superior electrical conductivity properties [117][118][119]. However, it is a less explored polymer than the polyaniline and polypyrrole matrices.…”
Section: Graphene Nanocomposites For Emi Shieldingmentioning
confidence: 99%
See 1 more Smart Citation
“…Accordingly, the complex permittivity real part was increased from 18.4 to 23.2, and the complex permittivity imaginary part was improved from 14 to 21.8. Polythiophene has also been applied to form EMI shielding materials due to superior electrical conductivity properties [117][118][119]. However, it is a less explored polymer than the polyaniline and polypyrrole matrices.…”
Section: Graphene Nanocomposites For Emi Shieldingmentioning
confidence: 99%
“…Guo and co-workers [121] reported polythiophene/graphene nanocomposites having excellent EMI shielding properties. In Polythiophene has also been applied to form EMI shielding materials due to superior electrical conductivity properties [117][118][119]. However, it is a less explored polymer than the polyaniline and polypyrrole matrices.…”
Section: Graphene Nanocomposites For Emi Shieldingmentioning
confidence: 99%
“…Chen et al. [ 146 ] fabricated PEDOT/wood composite for EMI shielding in X‐band. The composite was prepared from paulownia wood and in‐situ polymerization of PEDOT on the carbohydrate framework of the wood.…”
Section: Pedot: Pss Based Composites For Emi Shieldingmentioning
confidence: 99%