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Title: Graphene and MXene-based porous structures for multifunctional electromagnetic interference shielding
Authors: Shen, X 
Kim, JK
Issue Date: Jan-2023
Source: Nano research, Jan. 2023, v. 16, no. 1, p. 1387-1413
Abstract: Electrically conductive porous structures are ideal candidates for lightweight and absorption-dominant electromagnetic interference (EMI) shielding. In this review, we summarize the recent progress in developing porous composites and structures from emerging two-dimensional (2D) graphene and MXene nanosheets for EMI shielding applications. Important properties contributing to various energy loss mechanisms are probed with a critical discussion on their correlations with EMI shielding performance. Technological approaches to constructing bulk porous structures, such as 2D porous films, three-dimensional (3D) aerogels and foams, and hydrogels, are compared to highlight important material and processing parameters required to achieve optimal microstructures. A comprehensive comparison of EMI shielding performance is also carried out to elucidate the effects of different assembly techniques and microstructures. Distinctive multifunctional applications in adaptive EMI shielding, mechanical force attenuation, thermal management, and wearable devices are introduced, underlining the importance of unique compositions and microstructures of porous composites. The process-structure-property relationships established in this review would offer valuable guidance and insights into the design of lightweight EMI shielding materials. [Figure not available: see fulltext.].
Keywords: Electrical conductivity
Electromagnetic interference (EMI) shielding
Graphene
MXene
Porous composite
Publisher: Tsinghua University Press
Journal: Nano research 
ISSN: 1998-0124
EISSN: 1998-0000
DOI: 10.1007/s12274-022-4938-6
Rights: © Tsinghua University Press 2022
Posted with permission of the publisher.
The following publication Shen, X., Kim, JK. Graphene and MXene-based porous structures for multifunctional electromagnetic interference shielding. Nano Res. 16, 1387–1413 (2023) is available at https://dx.doi.org/10.1007/s12274-022-4938-6.
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