LICP OpenIR  > 羰基合成与选择氧化国家重点实验室(OSSO)
Ultrabroadband metamaterial absorbers based on ionic liquids
DepartmentOSSO国家重点实验室
Yang FL(杨富龙)1; Gong JH(宫剑豪)1; Yang E(杨娥)1; Guan YJ(关永吉)1; He XD(何晓东)1; Liu SM(刘士民)2; Zhang XP(张晓萍)1; Deng YQ(邓友全)2
The second department绿色化学与催化课题组
2019
Source PublicationAPPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING
Issue149Pages:1-9
Abstract

An ultrabroadband metamaterial absorber (MMAs) based on room temperature ionic liquids (ILs) and composed entirely
of cations and anions was proposed and analyzed in the microwave regimen. The dielectric permittivity of the ILs [EMIm]
[N(CN)2] was investigated from 0.5 to 50 GHz; the loss tangent tanδ of [EMIm] [N(CN)2] declines from 5.91 to 0.34,
which implies a high dielectric loss of microwaves. To further improve the impedance matching over a wide band, the ILs
[EMIm] [N(CN)2] were injected in a periodic photopolymer cylindrical array fabricated via 3D printing. We numerically and
experimentally demonstrate that this absorber shows over 90% absorption at 9.26–49 GHz when the incident angle is 45°
with a relative bandwidth as high as 134.6%. Versus water-based MMAs, the proposed absorber shows more than twice the
absorption bandwidth. Mechanistic investigations show that the ultrabroadband absorption characteristics of the ILs-based
MMAs mainly contribute to IL dispersion and electromagnetic resonance. Furthermore, the electromagnetic wave energy
loss is mainly due to the high-dielectric loss of ILs [EMIm] [N(CN)2].-

DOIhttps://doi.org/10.1007/s00339-019-2443-x
Indexed BySCI
If1.82
Language英语
compositor第二作者单位
Citation statistics
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/25814
Collection羰基合成与选择氧化国家重点实验室(OSSO)
Corresponding AuthorZhang XP(张晓萍); Deng YQ(邓友全)
Affiliation1.兰州大学
2.兰州化学物理研究所
Recommended Citation
GB/T 7714
Yang FL,Gong JH,Yang E,et al. Ultrabroadband metamaterial absorbers based on ionic liquids[J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING,2019(149):1-9.
APA Yang FL.,Gong JH.,Yang E.,Guan YJ.,He XD.,...&Deng YQ.(2019).Ultrabroadband metamaterial absorbers based on ionic liquids.APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING(149),1-9.
MLA Yang FL,et al."Ultrabroadband metamaterial absorbers based on ionic liquids".APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING .149(2019):1-9.
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