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PBO fiber grafted rGO aerogel/BN/PBO composites with highly improved electromagnetic interference shielding effectiveness and through-plane thermal conductivityopen access

Authors
Kim, JihoonKim, Jooheon
Issue Date
Dec-2023
Publisher
Elsevier Ltd
Keywords
Electromagnetic interference shielding effectiveness; PBO fiber grafting; Reduced graphene oxide aerogel; Thermal conductivity
Citation
Polymer Testing, v.129
Journal Title
Polymer Testing
Volume
129
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/71344
DOI
10.1016/j.polymertesting.2023.108282
ISSN
0142-9418
1873-2348
Abstract
With the advancement of electronic devices, the generation of heat and electromagnetic (EM) waves has increased. Therefore, it is essential to properly manage these heat and EM waves, while ensuring the flame retardancy and mechanical properties of the materials used in these devices. In this study, to compensate for the low thermal and electrical conductivity of Poly(p-phenylene-2,6-benzobisoxazole) (PBO), which was used as the matrix, reduced graphene oxide aerogel (rGOA) with high electrical conductivity and electromagnetic interference shielding effectiveness (EMI SE) performance and boron nitride (BN) with high thermal conductivity were selected as fillers (rGOA/BN). To significantly improve the compatibility of the filler with the matrix, PBO fiber was grafted onto the rGOA/BN filler. The fabricated composites exhibited high electrical conductivity of 21.1 S/cm and thermal conductivity of 4.81 W/m∙K, and the EMI SE and tensile strength were improved to up to 78.42 dB and 201.8 MPa, respectively. © 2023 The Authors
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Kim, Jooheon
대학원 (지능형에너지산업융합학과)
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