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用于可调谐负介电常数响应的木质素衍生轻质碳气凝胶

Lignin-Derived Lightweight Carbon Aerogels for Tunable Epsilon-Negative Response.

作者信息

Qu Yunpeng, Zhou Yunlei, Yang Qiuyun, Cao Jun, Liu Yao, Qi Xiaosi, Jiang Shan

机构信息

College of Physics, Guizhou University, Guiyang, 550025, China.

Hangzhou Institute of Technology, Xidian University, Hangzhou, 311200, China.

出版信息

Adv Sci (Weinh). 2024 Jul;11(26):e2401767. doi: 10.1002/advs.202401767. Epub 2024 May 7.

Abstract

Electromagnetic (EM) metamaterials have garnered considerable attention due to their capacity to achieve negative parameters, significantly influencing the integration of natural materials with artificially structural media. The emergence of carbon aerogels (CAs) offers an opportunity to create lightweight EM metamaterials, notable for their promising EM shielding or absorption effects. This paper introduces an efficient, low-cost method for fabricating CAs without requiring stringent drying conditions. By finely tuning the ZnCl/lignin ratio, the porosity is controlled in CAs. This control leads to an epsilon-negative response in the radio-frequency region, driven by the intrinsic plasmonic state of the 3D carbon network, as opposed to traditional periodic building blocks. This approach yields a tunable and weakly epsilon-negative response, reaching an order of magnitude of -10 under MHz frequencies. Equivalent circuit analysis highlights the inductive characteristics of CAs, correlating their significant dielectric loss at low frequencies. Additionally, EM simulations are performed to evaluate the distribution of the electric field vector in epsilon-negative CAs, showcasing their potential for effective EM shielding. The lignin-derived, lightweight CAs with their tunable epsilon-negative response hold promise for pioneering new directions in EM metamaterials and broadening their application in diverse extreme conditions.

摘要

电磁(EM)超材料因其能够实现负参数而备受关注,这对天然材料与人工结构介质的集成产生了重大影响。碳气凝胶(CAs)的出现为制造轻质EM超材料提供了契机,其具有良好的电磁屏蔽或吸收效果。本文介绍了一种高效、低成本的制备CAs的方法,该方法无需严格的干燥条件。通过微调ZnCl/木质素的比例,可以控制CAs的孔隙率。这种控制导致在射频区域出现负介电常数响应,这是由三维碳网络的固有等离子体状态驱动的,与传统的周期性结构单元不同。这种方法产生了可调谐且微弱的负介电常数响应,在兆赫兹频率下达到-10的量级。等效电路分析突出了CAs的电感特性,将其与低频下显著的介电损耗相关联。此外,还进行了电磁模拟,以评估负介电常数CAs中电场矢量的分布,展示了它们在有效电磁屏蔽方面的潜力。具有可调谐负介电常数响应的木质素衍生轻质CAs有望为电磁超材料开辟新方向,并拓宽其在各种极端条件下的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a487/11234391/f59317e3aa7e/ADVS-11-2401767-g002.jpg

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