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An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer

MXene and conductive polymers are attractive candidates for electromagnetic interference shielding (EMI) applications. The MXene–PAT-conductive polymer (CP) composites were fabricated by a cost-effective spray coating technique and characterized using X-ray photoelectron spectroscopy (XPS), scanning...

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Autores principales: Raagulan, Kanthasamy, Braveenth, Ramanaskanda, Kim, Bo Mi, Lim, Kwang Jin, Lee, Sang Bok, Kim, Miyoung, Chai, Kyu Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9048165/
https://www.ncbi.nlm.nih.gov/pubmed/35494715
http://dx.doi.org/10.1039/c9ra09522e
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author Raagulan, Kanthasamy
Braveenth, Ramanaskanda
Kim, Bo Mi
Lim, Kwang Jin
Lee, Sang Bok
Kim, Miyoung
Chai, Kyu Yun
author_facet Raagulan, Kanthasamy
Braveenth, Ramanaskanda
Kim, Bo Mi
Lim, Kwang Jin
Lee, Sang Bok
Kim, Miyoung
Chai, Kyu Yun
author_sort Raagulan, Kanthasamy
collection PubMed
description MXene and conductive polymers are attractive candidates for electromagnetic interference shielding (EMI) applications. The MXene–PAT-conductive polymer (CP) composites were fabricated by a cost-effective spray coating technique and characterized using X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), X-ray diffraction (XRD) and Raman spectroscopy. A new approach has been developed for the synthesis of exfoliated MXene. The MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer composite exhibited good electric conductivity (EC) of 7.813 S cm(−1). The composites revealed an excellent thermal properties, which were 0.687 W (m K)(−1) thermal conductivity, 2.247 J (g K)(−1) heat capacity, 0.282 mm(2) s(−1) thermal diffusivity and 1.330 W s(1/2) m(−2) K(−1) thermal effusivity. The composites showed 99.99% shielding efficiency and the MXene–PAT–PANI–PpAP composite (MXPATPA) had EMI shielding effectiveness of 45.18 dB at 8.2 GHz. The reduced form of MXene (r-Ti(3)C(2)T(x)) increased the shielding effectiveness (SE) by 7.26% and the absorption (SE(A)) was greatly enhanced by the ant farm like structure. The composites possess excellent thermal and EMI SE characteristics, thus can be applied in areas, such as mobile phones, military utensils, heat-emitting electronic devices, automobiles and radars.
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spelling pubmed-90481652022-04-28 An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer Raagulan, Kanthasamy Braveenth, Ramanaskanda Kim, Bo Mi Lim, Kwang Jin Lee, Sang Bok Kim, Miyoung Chai, Kyu Yun RSC Adv Chemistry MXene and conductive polymers are attractive candidates for electromagnetic interference shielding (EMI) applications. The MXene–PAT-conductive polymer (CP) composites were fabricated by a cost-effective spray coating technique and characterized using X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), X-ray diffraction (XRD) and Raman spectroscopy. A new approach has been developed for the synthesis of exfoliated MXene. The MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer composite exhibited good electric conductivity (EC) of 7.813 S cm(−1). The composites revealed an excellent thermal properties, which were 0.687 W (m K)(−1) thermal conductivity, 2.247 J (g K)(−1) heat capacity, 0.282 mm(2) s(−1) thermal diffusivity and 1.330 W s(1/2) m(−2) K(−1) thermal effusivity. The composites showed 99.99% shielding efficiency and the MXene–PAT–PANI–PpAP composite (MXPATPA) had EMI shielding effectiveness of 45.18 dB at 8.2 GHz. The reduced form of MXene (r-Ti(3)C(2)T(x)) increased the shielding effectiveness (SE) by 7.26% and the absorption (SE(A)) was greatly enhanced by the ant farm like structure. The composites possess excellent thermal and EMI SE characteristics, thus can be applied in areas, such as mobile phones, military utensils, heat-emitting electronic devices, automobiles and radars. The Royal Society of Chemistry 2020-01-08 /pmc/articles/PMC9048165/ /pubmed/35494715 http://dx.doi.org/10.1039/c9ra09522e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Raagulan, Kanthasamy
Braveenth, Ramanaskanda
Kim, Bo Mi
Lim, Kwang Jin
Lee, Sang Bok
Kim, Miyoung
Chai, Kyu Yun
An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer
title An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer
title_full An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer
title_fullStr An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer
title_full_unstemmed An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer
title_short An effective utilization of MXene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from MXene–PAT–poly(p-aminophenol)–polyaniline co-polymer
title_sort effective utilization of mxene and its effect on electromagnetic interference shielding: flexible, free-standing and thermally conductive composite from mxene–pat–poly(p-aminophenol)–polyaniline co-polymer
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9048165/
https://www.ncbi.nlm.nih.gov/pubmed/35494715
http://dx.doi.org/10.1039/c9ra09522e
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