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https://dspace.iiti.ac.in/handle/123456789/13021
Title: | Conductive polymer nanocomposite incorporated with carbon nanotubes for effective electromagnetic interference shielding: A numerical study |
Authors: | Dubey, Prakhar Gupta, Madhur Kundalwal, Shailesh |
Keywords: | carbon nanotubes;conductivity;EMI shielding;nanocomposite |
Issue Date: | 2023 |
Publisher: | John Wiley and Sons Inc |
Citation: | Dubey, P., Gupta, M., & Kundalwal, S. I. (2023). Conductive polymer nanocomposite incorporated with carbon nanotubes for effective electromagnetic interference shielding: A numerical study. Polymer Composites. Scopus. https://doi.org/10.1002/pc.28011 |
Abstract: | This study presents a comprehensive numerical investigation of the electromagnetic interference (EMI) shielding capabilities of a conductive polymer nanocomposite incorporated with carbon nanotubes (CPNC) in the X-band. The investigation is conducted using a commercial finite element simulation package, Ansys HFSS. The study focuses on analyzing the EMI shielding effectiveness (SE) of CPNC by varying the weight percent (wt%) of carbon nanotubes (CNTs), thickness, and shape of the shielding material. Our outcomes show that the EMI SE of CPNC increases with the wt% of CNTs. Notably, a maximum EMI SE is observed around ~90 dB due to absorption (SEA) at a 4 mm pallet-shaped CPNC and ~180 dB for a hollow cylindrical CPNC (22.86 mm outer diameter and 3 mm thickness) with 2 wt% of CNT. The EMI SE due to absorption (SEA) at a pallet thickness of 4 mm exhibits a significant improvement of ~107% compared to the SEA observed at a thickness of 1 mm. These findings highlight the exceptional absorption capabilities and lightweight nature of CPNC, rendering it a promising shielding material for aerospace and satellite communication applications. Highlights: EMI SE of CPNC increases with the wt% of CNT in the polypyrrole (PPy) matrix. The percolation threshold is observed at a low 2 wt% concentration of CNT. Thickness of the shielding material influences the EMI SE of CPNC. CPNC provides absorption-dominated shielding. © 2023 Society of Plastics Engineers. |
URI: | https://doi.org/10.1002/pc.28011 https://dspace.iiti.ac.in/handle/123456789/13021 |
ISSN: | 0272-8397 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Mechanical Engineering |
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