From Magnetoelectric Core–Shell Structure to Compound Eye‐Inspired Metamaterials: Multiscale Design of Ultra‐Wideband Electromagnetic Wave Absorber Device DOI

Yusong Ma,

Haoyu Zhao,

Nian Luo

et al.

Small, Journal Year: 2025, Volume and Issue: unknown

Published: April 25, 2025

Abstract The integration of macroscopic and microscopic structural designs plays a crucial role in developing high‐performance electromagnetic wave (EMW) absorber devices. In this work, an innovative metamaterial based on multi‐scale design is introduced to address the challenge narrowband absorption. Specifically, at scale, highly efficient absorbing material (FCIP@SiO 2 @Ppy) synthesized through integrated optimization strategy, which functional layers are uniquely combined maximize performance. By leveraging heterogeneous interfaces, establishes magneto‐electric coupling network, ensuring excellent impedance matching significantly enhancing EMW absorption capacity material. Notably, achieves record low reflection loss (RL) −66.66 dB 9.95 GHz with broad bandwidth 5.92 (RL ≤ −10 dB), subsequently used fabricate device. Building upon this, inspired by compound eye structure arthropods, groundbreaking proposed. Simulations reveal achievement ultra‐wideband (2.75–18 GHz) remarkably thin thickness just 12 mm. These pioneering results present effective strategies for development next‐generation

Language: Английский

Research progress of structural regulation and composition optimization to strengthen absorbing mechanism in emerging composites for efficient electromagnetic protection DOI
Pengfei Yin, Di Lan,

Changfang Lu

et al.

Journal of Material Science and Technology, Journal Year: 2024, Volume and Issue: 204, P. 204 - 223

Published: April 20, 2024

Language: Английский

Citations

66

2D/2D coupled MOF/Fe composite metamaterials enable robust ultra–broadband microwave absorption DOI Creative Commons

Ning Qu,

Hanxu Sun,

Yuyao Sun

et al.

Nature Communications, Journal Year: 2024, Volume and Issue: 15(1)

Published: July 5, 2024

Abstract The combination between macroscopic structure designs and microscopic material offers tremendous possibilities for the development of advanced electromagnetic wave (EMW) absorbers. Herein, we propose a metamaterial design to address persistent challenges in this field, including narrow bandwidth, low–frequency bottlenecks, and, particularly, urgent issue robustness (i.e., oblique, polarized incidence). Our absorber features semiconductive metal-organic framework/iron 2D/2D assembly (CuHT–FCIP) with abundant crystal/crystal heterojunctions strong magneto-electric coupling networks. This achieves remarkable EMW absorption across broad range (2 40 GHz) at thickness just 9.3 mm. Notably, it maintains stable performance against oblique incidence (within 75°) polarizations (both transverse electric magnetic). Furthermore, demonstrates high specific compressive strength (201.01 MPa·cm 3 ·g −1 ) low density (0.89 g·cm −3 ). advancement holds promise developing robust absorbers superior performance.

Language: Английский

Citations

63

Tailoring electromagnetic responsiveness of Tremella-like multi-dimensional heterostructures through a self-decomposition strategy DOI

Huichao Rao,

Ping Wang, Yikun Chen

et al.

Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: unknown, P. 157121 - 157121

Published: Oct. 1, 2024

Language: Английский

Citations

23

Magnetic Bimetallic Heterointerface Nanomissiles with Enhanced Microwave Absorption for Microwave Thermal/Dynamics Therapy of Breast Cancer DOI

Min Yu,

Shimei Li, Xiangling Ren

et al.

ACS Nano, Journal Year: 2024, Volume and Issue: 18(4), P. 3636 - 3650

Published: Jan. 16, 2024

Microwave thermotherapy (MWT) has shown great potential in cancer treatment due to its deep tissue penetration and minimally invasive nature. However, the poor microwave absorption (MA) properties of thermal sensitizer medical frequency band significantly limit effect MWT then weaken therapeutic efficacy. In this paper, a Ni-based multilayer heterointerface nanomissile MOFs-Ni-Ru@COFs (MNRC) with improved MA performance desired via introducing magnetic loss dielectric is developed for MWT-based treatment. The loading Ni nanoparticle MNRC mediates loss, band. formed by nanoengineering induces significant interfacial polarization, increasing enhancing generated performance. Moreover, strong range not only enhances MW but also facilitates electron energy transfer, generating reactive oxygen species (ROS) at tumor sites mediate dynamic therapy (MDT). strategy strengthening improve MWT-MDT provides direction expanding clinical application

Language: Английский

Citations

22

Recycling waste chaff to prepare biochar with co-decorated CoCO3/CoNiO2 for anti-bacterial microwave dissipation DOI
Shujie Liu, Di Lan, Kaiming Wang

et al.

Materials Research Bulletin, Journal Year: 2024, Volume and Issue: 173, P. 112702 - 112702

Published: Jan. 21, 2024

Language: Английский

Citations

20

Construction of NiCo2O4/NiCoO2 co-embedded porous bio-carbon with rich heterogeneous interfaces for excellent bacteriostatic microwave radiation protection DOI

Ting Hu,

Di Lan, Jian Wang

et al.

Carbon, Journal Year: 2024, Volume and Issue: 232, P. 119798 - 119798

Published: Nov. 4, 2024

Language: Английский

Citations

17

Construction of CoFe2O4/MXene hybrids with plentiful heterointerfaces for high-performance electromagnetic wave absorption through dielectric-magnetic cooperation strategy DOI
Zhengzheng Guo, Peien Luo,

Ze Zong

et al.

Materials Today Physics, Journal Year: 2023, Volume and Issue: 38, P. 101277 - 101277

Published: Nov. 1, 2023

Language: Английский

Citations

29

Heterostructured MXene/Ni Composites for Tunable Electromagnetic Wave Absorption DOI
Jiajia Zheng,

Zhihui Li,

Jiayue Zheng

et al.

ACS Applied Nano Materials, Journal Year: 2024, Volume and Issue: 7(9), P. 10860 - 10869

Published: April 25, 2024

Designing an absorber to mitigate the electromagnetic radiation pollution caused by rapid development of radio technology with multiple characteristics, including high reflection loss (RL), broad absorption bandwidth, thinness, and low filling ratio, is crucial but challenging. This work prepared three-dimensional heterogeneous MXene/Ni composites using electrostatic self-assembly method. Due synergistic effect dielectric loss, magnetic unique structure, obtained multilayer composites, a ratio 15 wt % thickness only 1.5 mm, achieved astonishing minimum RL value −79.6 dB effective bandwidth (EAB) 3.35 GHz. Furthermore, ultrawide tunable EAB 12.35 GHz could be in frequency range 3.30–15.65 adjusting matching samples. design interface structure provides practical strategy develop high-performance next-generation absorbers.

Language: Английский

Citations

11

MXenes as catalysts for lightweight hydrogen storage materials: a review DOI Creative Commons

Jia‐Yi Deng,

Yun Li, Hua Ning

et al.

Materials Today Catalysis, Journal Year: 2024, Volume and Issue: 7, P. 100073 - 100073

Published: Nov. 6, 2024

Language: Английский

Citations

9

Advancements in 2D Titanium Carbide (MXene) for Electromagnetic Wave Absorption: Mechanisms, Methods, Enhancements, and Applications DOI Open Access
Yang Wang, Na Li, Gui‐Wen Huang

et al.

Small Methods, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 28, 2025

Abstract With the advent of 5G era, there has been a marked increase in research interest concerning electromagnetic wave‐absorbing materials. A critical challenge remains improving properties these materials while satisfying diverse application demands. MXenes, identified as prominent “emerging” 2D for wave absorption, offer unique advantages that are expected to drive advancements and innovations this field. This review emphasizes synthesis benefits provided by structural characteristics MXenes performance enhancements achieved through their combination with other absorbing Material requirements, approaches, conceptual frameworks integrated underscore advantages. The study provides thorough analysis MXene‐absorbing composites, going beyond basic classification address preparation modification processes affecting absorption composites. Attention is directed techniques, design principles, influence on composite performance. Additionally, potential applications devices summarized. concludes addressing challenges currently confronting MXene outlining developmental trends, aiming guidance subsequent domain.

Language: Английский

Citations

1