Preparation and characterization of flexibility and lightweight CF-RGO composites

J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
Institute of Physics (IOP)
Published 2018
Publication Date:
2018-02-03
Publisher:
Institute of Physics (IOP)
Print ISSN:
1757-8981
Electronic ISSN:
1757-899X
Topics:
Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
Published by:
_version_ 1839207878998622208
autor J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
beschreibung Absorbing materials are developed with the concept of “thin, light, wide and strong”, and various methods and materials have been attempted to satisfy the demand. In this work, the in situ growth method were conducted to grow reduced graphene (RGO) into carbon fiber (CF) to prepare CF-RGO composites. Moreover, the phase, microstructure and electromagnetic performance of the flexibility and lightweight composites were characterized. Consequently, the XRD and SEM results indicate the RGO is well grown on the surface of CF. The microwave absorption performance of the as-prepared samples were calculated, and the results show that the effective absorption band of the composites move towards low frequency once the RGO were introduced into the CF.
citation_standardnr 6153804
datenlieferant ipn_articles
feed_id 123476
feed_publisher Institute of Physics (IOP)
feed_publisher_url http://www.iop.org/
insertion_date 2018-02-03
journaleissn 1757-899X
journalissn 1757-8981
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Institute of Physics (IOP)
quelle IOP Conference Series: Materials Science and Engineering
relation http://iopscience.iop.org/1757-899X/292/1/012093
search_space articles
shingle_author_1 J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
shingle_author_2 J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
shingle_author_3 J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
shingle_author_4 J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
shingle_catch_all_1 Preparation and characterization of flexibility and lightweight CF-RGO composites
Absorbing materials are developed with the concept of “thin, light, wide and strong”, and various methods and materials have been attempted to satisfy the demand. In this work, the in situ growth method were conducted to grow reduced graphene (RGO) into carbon fiber (CF) to prepare CF-RGO composites. Moreover, the phase, microstructure and electromagnetic performance of the flexibility and lightweight composites were characterized. Consequently, the XRD and SEM results indicate the RGO is well grown on the surface of CF. The microwave absorption performance of the as-prepared samples were calculated, and the results show that the effective absorption band of the composites move towards low frequency once the RGO were introduced into the CF.
J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_catch_all_2 Preparation and characterization of flexibility and lightweight CF-RGO composites
Absorbing materials are developed with the concept of “thin, light, wide and strong”, and various methods and materials have been attempted to satisfy the demand. In this work, the in situ growth method were conducted to grow reduced graphene (RGO) into carbon fiber (CF) to prepare CF-RGO composites. Moreover, the phase, microstructure and electromagnetic performance of the flexibility and lightweight composites were characterized. Consequently, the XRD and SEM results indicate the RGO is well grown on the surface of CF. The microwave absorption performance of the as-prepared samples were calculated, and the results show that the effective absorption band of the composites move towards low frequency once the RGO were introduced into the CF.
J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_catch_all_3 Preparation and characterization of flexibility and lightweight CF-RGO composites
Absorbing materials are developed with the concept of “thin, light, wide and strong”, and various methods and materials have been attempted to satisfy the demand. In this work, the in situ growth method were conducted to grow reduced graphene (RGO) into carbon fiber (CF) to prepare CF-RGO composites. Moreover, the phase, microstructure and electromagnetic performance of the flexibility and lightweight composites were characterized. Consequently, the XRD and SEM results indicate the RGO is well grown on the surface of CF. The microwave absorption performance of the as-prepared samples were calculated, and the results show that the effective absorption band of the composites move towards low frequency once the RGO were introduced into the CF.
J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_catch_all_4 Preparation and characterization of flexibility and lightweight CF-RGO composites
Absorbing materials are developed with the concept of “thin, light, wide and strong”, and various methods and materials have been attempted to satisfy the demand. In this work, the in situ growth method were conducted to grow reduced graphene (RGO) into carbon fiber (CF) to prepare CF-RGO composites. Moreover, the phase, microstructure and electromagnetic performance of the flexibility and lightweight composites were characterized. Consequently, the XRD and SEM results indicate the RGO is well grown on the surface of CF. The microwave absorption performance of the as-prepared samples were calculated, and the results show that the effective absorption band of the composites move towards low frequency once the RGO were introduced into the CF.
J Li, S Bi, X J Su, G L Hou, B Mei and W Q Ma
Institute of Physics (IOP)
1757-8981
17578981
1757-899X
1757899X
shingle_title_1 Preparation and characterization of flexibility and lightweight CF-RGO composites
shingle_title_2 Preparation and characterization of flexibility and lightweight CF-RGO composites
shingle_title_3 Preparation and characterization of flexibility and lightweight CF-RGO composites
shingle_title_4 Preparation and characterization of flexibility and lightweight CF-RGO composites
timestamp 2025-07-31T23:41:56.688Z
titel Preparation and characterization of flexibility and lightweight CF-RGO composites
titel_suche Preparation and characterization of flexibility and lightweight CF-RGO composites
topic ZL
uid ipn_articles_6153804