Recent advances in design strategies and multifunctionality of flexible electromagnetic interference shielding materials

J Cheng, C Li, Y Xiong, H Zhang, H Raza, S Ullah… - Nano-micro letters, 2022 - Springer
With rapid development of 5G communication technologies, electromagnetic interference
(EMI) shielding for electronic devices has become an urgent demand in recent years, where …

Electromagnetic interference shielding polymers and nanocomposites-a review

D Jiang, V Murugadoss, Y Wang, J Lin, T Ding… - Polymer …, 2019 - Taylor & Francis
Intrinsically conducting polymers (ICP) and conductive fillers incorporated conductive
polymer-based composites (CPC) greatly facilitate the research in electromagnetic …

Interface engineered microcellular magnetic conductive polyurethane nanocomposite foams for electromagnetic interference shielding

G Sang, P Xu, T Yan, V Murugadoss, N Naik, Y Ding… - Nano-Micro Letters, 2021 - Springer
Lightweight microcellular polyurethane (TPU)/carbon nanotubes (CNTs)/nickel-coated CNTs
(Ni@ CNTs)/polymerizable ionic liquid copolymer (PIL) composite foams are prepared by …

Flexible thermoplastic polyurethane-carbon nanotube composites for electromagnetic interference shielding and thermal management

B Shin, S Mondal, M Lee, S Kim, YI Huh… - Chemical Engineering …, 2021 - Elsevier
Lightweight, flexible, and thermally conductive electromagnetic interference (EMI) shielding
materials have garnered front facet research interest because of urgent demand to address …

Multifunctional polyether block amides/carbon nanostructures piezoresistive foams with largely linear range, enhanced and humidity-regulated microwave shielding

X Li, S Li, M Wu, Z Weng, Q Ren, P Xiao, L Wang… - Chemical Engineering …, 2023 - Elsevier
Flexible foam sensors have great potential applications in wearable electronic skin and
motion detection. However, they usually have a low linear range, complex and no …

Flexible and wearable carbon black/thermoplastic polyurethane foam with a pinnate-veined aligned porous structure for multifunctional piezoresistive sensors

Y Zhai, Y Yu, K Zhou, Z Yun, W Huang, H Liu… - Chemical Engineering …, 2020 - Elsevier
In this paper, flexible conductive carbon black (CB)/thermoplastic polyurethane (TPU) foam
(CTF) with an intriguing pinnate-veined aligned porous structure was fabricated via a …

Flexible, superhydrophobic and highly conductive composite based on non-woven polypropylene fabric for electromagnetic interference shielding

J Gao, J Luo, L Wang, X Huang, H Wang… - Chemical Engineering …, 2019 - Elsevier
Electromagnetic pollution often causes disturbances to nearby electronic apparatus and
also severely threatens people's health, and it is therefore urgent to develop electromagnetic …

A comprehensive review on carbon-based polymer nanocomposite foams as electromagnetic interference shields and piezoresistive sensors

M Panahi-Sarmad, M Noroozi… - ACS Applied …, 2020 - ACS Publications
Polymer-based nanocomposite foams containing carbonic fillers have greatly facilitated
scientific research efforts in electromagnetic interference (EMI) shielding, as well as …

A green approach to preparing hydrophobic, electrically conductive textiles based on waterborne polyurethane for electromagnetic interference shielding with low …

M Dai, Y Zhai, Y Zhang - Chemical Engineering Journal, 2021 - Elsevier
A green method was employed to fabricate a coated textile with hydrophobic surface that
provided electromagnetic interference shielding performance with low reflectivity. First, two …

Fabrication of reduced graphene oxide/silver nanoparticles decorated conductive cotton fabric for high performing electromagnetic interference shielding and …

S Ghosh, S Ganguly, P Das, TK Das, M Bose… - Fibers and …, 2019 - Springer
Conductive filler loading in the polymer matrix is a common practice to transform insulative
polymers to conducting composites. In case of textiles, the highly promising approach has …