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Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss

Electromagnetic (EM) wave pollution is harmful to human health and environment, thus it is absolutely important to develop new electromagnetic wave absorbing materials. MAX phases have been attracted more attention as a potential candidate for electromagnetic wave absorbing materials due to their hi...

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Autores principales: Chen, Lu, Li, Youbing, Zhao, Biao, Liu, Shanshan, Zhang, Huibin, Chen, Ke, Li, Mian, Du, Shiyu, Xiu, Faxian, Che, Renchao, Chai, Zhifang, Huang, Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10074122/
https://www.ncbi.nlm.nih.gov/pubmed/36727817
http://dx.doi.org/10.1002/advs.202206877
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author Chen, Lu
Li, Youbing
Zhao, Biao
Liu, Shanshan
Zhang, Huibin
Chen, Ke
Li, Mian
Du, Shiyu
Xiu, Faxian
Che, Renchao
Chai, Zhifang
Huang, Qing
author_facet Chen, Lu
Li, Youbing
Zhao, Biao
Liu, Shanshan
Zhang, Huibin
Chen, Ke
Li, Mian
Du, Shiyu
Xiu, Faxian
Che, Renchao
Chai, Zhifang
Huang, Qing
author_sort Chen, Lu
collection PubMed
description Electromagnetic (EM) wave pollution is harmful to human health and environment, thus it is absolutely important to develop new electromagnetic wave absorbing materials. MAX phases have been attracted more attention as a potential candidate for electromagnetic wave absorbing materials due to their high conductivity and nanolaminated structure. Herein, two new magnetic MAX phases with multiprincipal elements ((Ti(1/3)Nb(1/3)Ta(1/3))(2)FeC and (Ti(0.2)V(0.2)Nb(0.2)Ta(0.2)Zr(0.2))(2)FeC) in which Fe atoms replace Al atoms in the A sites are successfully synthesized by an isomorphous replacement reaction of multiprincipal (Ti(1/3)Nb(1/3)Ta(1/3))(2)AlC and (Ti(0.2)V(0.2)Nb(0.2)Ta(0.2)Zr(0.2))(2)AlC MAX phases with Lewis acid salt (FeCl(2)). (Ti(1/3)Nb(1/3)Ta(1/3))(2)FeC and (Ti(0.2)V(0.2)Nb(0.2)Ta(0.2)Zr(0.2))(2)FeC exhibit ferromagnetic behavior, and the Curie temperature (T (c)) are 302 and 235 K, respectively. The dual electromagnetic absorption mechanisms that include dielectric and magnetic loss, which is realized in these multiprincipal MAX phases. The minimum reflection loss (RL) of (Ti(1/3)Nb(1/3)Ta(1/3))(2)FeC is −44.4 dB at 6.56 GHz with 3 mm thickness, and the effective bandwidth is 2.48 GHz. Additionally, the electromagnetic wave absorption properties of the magnetic MAX phases indicate that magnetic loss also plays an important role besides dielectric loss. This work shows a promising composition‐design strategy to develop MAX phases with good EM wave absorption performance via simultaneously regulating dielectric and magnetic loss together.
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spelling pubmed-100741222023-04-06 Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss Chen, Lu Li, Youbing Zhao, Biao Liu, Shanshan Zhang, Huibin Chen, Ke Li, Mian Du, Shiyu Xiu, Faxian Che, Renchao Chai, Zhifang Huang, Qing Adv Sci (Weinh) Research Articles Electromagnetic (EM) wave pollution is harmful to human health and environment, thus it is absolutely important to develop new electromagnetic wave absorbing materials. MAX phases have been attracted more attention as a potential candidate for electromagnetic wave absorbing materials due to their high conductivity and nanolaminated structure. Herein, two new magnetic MAX phases with multiprincipal elements ((Ti(1/3)Nb(1/3)Ta(1/3))(2)FeC and (Ti(0.2)V(0.2)Nb(0.2)Ta(0.2)Zr(0.2))(2)FeC) in which Fe atoms replace Al atoms in the A sites are successfully synthesized by an isomorphous replacement reaction of multiprincipal (Ti(1/3)Nb(1/3)Ta(1/3))(2)AlC and (Ti(0.2)V(0.2)Nb(0.2)Ta(0.2)Zr(0.2))(2)AlC MAX phases with Lewis acid salt (FeCl(2)). (Ti(1/3)Nb(1/3)Ta(1/3))(2)FeC and (Ti(0.2)V(0.2)Nb(0.2)Ta(0.2)Zr(0.2))(2)FeC exhibit ferromagnetic behavior, and the Curie temperature (T (c)) are 302 and 235 K, respectively. The dual electromagnetic absorption mechanisms that include dielectric and magnetic loss, which is realized in these multiprincipal MAX phases. The minimum reflection loss (RL) of (Ti(1/3)Nb(1/3)Ta(1/3))(2)FeC is −44.4 dB at 6.56 GHz with 3 mm thickness, and the effective bandwidth is 2.48 GHz. Additionally, the electromagnetic wave absorption properties of the magnetic MAX phases indicate that magnetic loss also plays an important role besides dielectric loss. This work shows a promising composition‐design strategy to develop MAX phases with good EM wave absorption performance via simultaneously regulating dielectric and magnetic loss together. John Wiley and Sons Inc. 2023-02-02 /pmc/articles/PMC10074122/ /pubmed/36727817 http://dx.doi.org/10.1002/advs.202206877 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Chen, Lu
Li, Youbing
Zhao, Biao
Liu, Shanshan
Zhang, Huibin
Chen, Ke
Li, Mian
Du, Shiyu
Xiu, Faxian
Che, Renchao
Chai, Zhifang
Huang, Qing
Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss
title Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss
title_full Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss
title_fullStr Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss
title_full_unstemmed Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss
title_short Multiprincipal Element M(2)FeC (M = Ti,V,Nb,Ta,Zr) MAX Phases with Synergistic Effect of Dielectric and Magnetic Loss
title_sort multiprincipal element m(2)fec (m = ti,v,nb,ta,zr) max phases with synergistic effect of dielectric and magnetic loss
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10074122/
https://www.ncbi.nlm.nih.gov/pubmed/36727817
http://dx.doi.org/10.1002/advs.202206877
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