Metal-Catalyzed Carbon Foams Synthesized from Glucose as Highly Efficient Electromagnetic Absorbers

Author:

Liu Guan-Hong1,Wei Chuan-Ying1,Huang Ting2,Wang Fei1,Chang Jiang-Fan13,Sun Qian1,Zhang Xian-Hui13

Affiliation:

1. School of Marine Engineering, Jimei University, Xiamen 361021, China

2. Xiamen Branch of the Luoyang Ship Material Research Institute, Xiamen 361021, China

3. Xiamen Key Laboratory of Marine Corrosion and Smart Protective Materials, Fujian Provincial Key Laboratory of Naval Architecture and Ocean Engineering, Jimei University, Xiamen 361021, China

Abstract

This paper introduces a novel method for preparing high-performance, metal-containing carbon foam wave-absorbing materials. The process involves foaming glucose through catalysis by transition metals followed by high-temperature pyrolysis. The resulting carbon foam materials exhibit a highly porous structure, which is essential for their wave-absorption properties. Notably, at a thickness of 2.0 mm, the glucose-derived carbon foam composite catalyzed by Fe and Co (GCF-CoFe) achieved a minimum reflection loss (RLmin) of −51.4 dB at 15.11 GHz, along with an effective absorption bandwidth (EAB) of 5.20 GHz, spanning from 12.80 GHz to 18.00 GHz. These impressive performance metrics indicate that this approach offers a promising pathway for developing low-density, efficient carbon foam materials for wave-absorption applications. This advancement has significant implications for fields requiring effective electromagnetic interference (EMI) shielding, stealth technology, and other related applications, potentially leading to more efficient and lightweight solutions.

Funder

Natural Science Foundation of Fujian Province

Fujian Province University-Industry Collaborative Innovation Project

National Natural Fund Regional Innovation and Development Joint Fund of China

Publisher

MDPI AG

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