Influence of Ni-Zn-Cu-ferrite on electroactive β-phase in poly(vinylidene fluoride)-Ni-Zn-Cu-ferrite nanocomposite film: Unique metamaterial for enhanced microwave absorption

被引:28
作者
Saha, Papiya [1 ,2 ]
Das, Sukhen [2 ]
Sutradhar, Soumyaditya [1 ]
机构
[1] Amity Univ, Dept Phys, Kolkata 700156, India
[2] Jadavpur Univ, Dept Phys, Kolkata 700032, India
关键词
BEHAVIOR; NANOPARTICLES; COMPOSITES; MORPHOLOGY; FLUORIDE); BLENDS;
D O I
10.1063/1.5038134
中图分类号
O59 [应用物理学];
学科分类号
摘要
In search of a new radar absorbing material for microwave applications, the nanoparticles of Ni0.40Zn0.40Cu0.20Fe2O4 (NZCF) are successfully incorporated in the matrix of poly(vinylidene fluoride) (PVDF), and this NZCF-PVDF nanocomposite system has evolved as the potential one for absorbing radiations in the microwave/GHz frequency range. The enhancement of electroactive beta-phase of PVDF has been observed in the NZCF-PVDF nanocomposite system due to the formation of NZCF-PVDF interfaces. Also, the magnetic dipoles of ferrite nanoparticles are present in the same resultant nanocomposite system. Both these factors play a significant role in the interaction of microwave radiation with the medium of the nanocomposite system. The optimization of wave matter interaction leads to the superior reflection loss property of the NZCF-PVDF nanocomposite system. The mutual contributions of both magnetic nano-fillers and electroactive PVDF polymers make this NZCF-PVDF nanocomposite system a unique metamaterial for enhanced microwave absorption. Many articles have been published on polymer-ferrite systems but in true sense the involvement of NZCF-PVDF interfaces as active centres during wave matter interactions has not been considered by anyone else. Reflection loss property of all the NZCF-PVDF nanocomposite films has been observed, and a maximum of -49.7 dB at 13.2 GHz is obtained for 10 wt. % of NZCF loaded PVDF nanocomposite films. This is the highest reflection loss ever found in these types of polymer based metamaterials. Also, the high reflection loss in NZCF-PVDF nanocomposite films (X and K-u bands) makes it the most suitable one for the applications in the area of microwave devices. Published by AIP Publishing.
引用
收藏
页数:10
相关论文
共 27 条
[1]   Poled polymers for sensors and photonic applications [J].
Bauer, S .
JOURNAL OF APPLIED PHYSICS, 1996, 80 (10) :5531-5558
[2]  
Bera R, 2015, J APPL POLYM SCI, V132, DOI [10.1002/APP.42803, 10.1002/app.42803]
[3]   Enhanced Piezoelectric Energy Harvesting Performance of Flexible PVDF-TrFE Bilayer Films with Graphene Oxide [J].
Bhavanasi, Venkateswarlu ;
Kumar, Vipin ;
Parida, Kaushik ;
Wang, Jiangxin ;
Lee, Pooi See .
ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (01) :521-529
[4]   Attenuating microwave radiation by absorption through controlled nanoparticle localization in PC/PVDF blends [J].
Biswas, Sourav ;
Kar, Goutam Prasanna ;
Bose, Suryasarathi .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (41) :27698-27712
[5]   Fabrication and microwave absorption of carbon nanotubes/CoFe2O4 spinel nanocomposite -: art. no. 033105 [J].
Che, RC ;
Zhi, CY ;
Liang, CY ;
Zhou, XG .
APPLIED PHYSICS LETTERS, 2006, 88 (03) :1-3
[6]   EMI SHIELDING MEASUREMENTS OF CONDUCTIVE POLYMER BLENDS [J].
COLANERI, NF ;
SHACKLETTE, LW .
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 1992, 41 (02) :291-297
[7]   Polyvinylidene fluoride/nickel composite materials for charge storing, electromagnetic interference absorption, and shielding applications [J].
Gargama, H. ;
Thakur, A. K. ;
Chaturvedi, S. K. .
JOURNAL OF APPLIED PHYSICS, 2015, 117 (22)
[8]   A comparison between magnetic and reflection loss characteristics of substituted strontium ferrite and nanocomposites of ferrite/carbon nanotubes [J].
Ghasemi, Ali ;
Shirsath, Sagar E. ;
Liu, Xiaoxi ;
Morisako, Akimitsu .
JOURNAL OF APPLIED PHYSICS, 2012, 111 (07)
[9]   Enhanced reflection loss characteristics of substituted barium ferrite/functionalized multi-walled carbon nanotube nanocomposites [J].
Ghasemi, Ali ;
Shirsath, Sagar E. ;
Liu, Xiaoxi ;
Morisako, Akimitsu .
JOURNAL OF APPLIED PHYSICS, 2011, 109 (07)
[10]  
GREGORIO R, 1994, J POLYM SCI POL PHYS, V32, P859, DOI 10.1002/polb.1994.090320509