伪装
超材料
掩蔽
电磁辐射
各向异性
能量收集
光学
电磁兼容性
多光谱图像
光电子学
导电体
透射率
材料科学
吸光度
光子学
物理
超材料吸收剂
电磁频谱
像素
发电机(电路理论)
电磁环境
能量(信号处理)
发电
电磁学
坡印亭病媒
电磁场
光子超材料
声学
电磁干扰
能量转换
作者
Xiaofen Yang,Kaixia Yang,Meiwan Ying,Zhengchen Wu,Wenbin You,Bicheng Li,Lei Wang,Liting Yang,Renchao Che
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-08-05
卷期号:12 (32): eaef7205-eaef7205
标识
DOI:10.1126/sciadv.aef7205
摘要
Adaptive electromagnetic compatibility, camouflage, and energy conversion raises challenge in the swiftly responsive modulation. Herein, we designed pixelated negative-Poisson-ratio metamaterials that enable fast control over structural anisotropy and thus electromagnetic properties. One-dimensional conductors are highly oriented in each pixel through sequential shear, stretch, and alignment processes. The uniaxial anisotropy leads to the highest conductive ratio of 2.8 × 10 6 among different directions. This enables the angle-dependent electromagnetic compatibility across transparency–absorption–shielding regions. The meta-framework realizes strain-reliant anisotropic tunability. The deformation continuously adjusts electromagnetic wave absorbance from 0.2 to 0.9 (reflection loss from −0.8 to −17 decibels). Through chess-like assembly, the framework can also maintain deformation-insensitive absorbance beyond 0.9. The proof-of-concept devices harvest environmental electromagnetic energy to electricity. The generator outputs more than 0.5 volts and the cell generate a peak power of 0.75 milliwatt. Besides, the devices demonstrate tunable camouflage in microwave, infrared, and visible spectra.
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