材料科学
反射损耗
制作
阻抗匹配
离子
吸收(声学)
反射(计算机编程)
光电子学
电介质
纳米技术
电阻抗
带宽(计算)
离子液体
合理设计
介电损耗
导电体
离子键合
插入损耗
工作(物理)
电子工程
聚甲基丙烯酸甲酯
聚合物
电子迁移率
输出阻抗
介电常数
作者
Yisong Yang,Hao Shi,Z. Q. Michael Chen,Daohu Sheng,Xiujuan Wang,Aming Xie,Soumya Mukherjee,Haibo Zeng,Weijin Li
标识
DOI:10.1002/adma.202523331
摘要
Suppressing ionic motion in ionogels for the fabrication of unprecedented EMW absorbers remains an unexplored frontier, as researchers have predominantly focused on facilitating rather than inhibiting ion transport. Herein, a rational double-network design strategy is developed to synthesize an ion motion-suppressed ionogel with record-high EMW absorption performance (minimum reflection loss -63.45 dB and 6.19 GHz bandwidth) that surpasses most ionogel absorbers. The double-network is constructed via the entangled assembly of polymethyl methacrylate and poly(2-acrylamido-2-methyl-1-propanesulfonic acid) (PAMPS) in 1-ethyl-3-methylimidazolium methanesulfonate ionic liquids. Thanks to strong electrostatic interactions, ion motion is restrained by the PAMPS network, balancing impedance matching and dielectric loss under EM fields. The resultant ionogels demonstrate a minimum reflection loss of -63.45 dB at 1.8 mm and a broad effective absorption bandwidth of 6.19 GHz (fully covering the Ku-band), both setting up new EMW absorption benchmarks among ionogels and their hybrids. Unlike emerging approaches that promote ionic conduction for loss, here we suppress ion mobility to optimize impedance matching, a paradigm shift in ionogel design. In essence, this work introduces a strategy to design high-performance, multifunctional ionogels, paving the way for next-generation flexible EMW absorbers in 5G/6G communications and wearable electronics.
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