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用于宽带微波吸收的柔性成膜聚多巴胺/聚吡咯/纳米金刚石分级结构的设计

Design of Flexible Film-Forming Polydopamine/Polypyrrole/Nanodiamond Hierarchical Structure for Broadband Microwave Absorption.

作者信息

Huang Ruoxuan, Zhang Yan, Zhang Zhiyong, Gou Guangjun, Chen Xiangnan

机构信息

College of Transportation Engineering, Dalian Maritime University, Dalian 116026, China.

School of Materials Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China.

出版信息

Polymers (Basel). 2022 May 15;14(10):2014. doi: 10.3390/polym14102014.

Abstract

Microwave-absorbing materials are widely used in numerous fields, including the military, daily protection, etc. Currently, in addition to being lightweight and highly efficient, good film-forming processing characteristics and environmental stability are also required for the practical application of microwave-absorbing materials, which, in general, are difficult to make compatible. In this paper, a mulberry-like PDA/PPy/ND hierarchical structure was prepared by in situ polymerization. The hierarchical structure showed remarkably enhanced microwave absorption, as well as better flexible film-forming characteristics, thanks to the multiple roles PDA played in the system. The optimal RL peak for PDA/PPy/ND could reach -43.6 dB at 7.58 GHz, which is mainly attributed to the multiple dielectric loss paths and significantly improved impedance-matching characteristics. Furthermore, given the H-bond crosslink, the introduction of PDA also promoted the film formation and dispersion of PDA/PPy/ND in the PVA matrix, forming a water-resistant and flexible film. This work provides a referencing path for the design and practical applications of lightweight microwave-absorbing materials.

摘要

吸波材料广泛应用于众多领域,包括军事、日常防护等。目前,吸波材料实际应用除了要求轻质高效外,还需要良好的成膜加工特性和环境稳定性,而这些特性通常难以兼顾。本文通过原位聚合法制备了桑葚状的聚多巴胺/聚吡咯/纳米二氧化钛(PDA/PPy/ND)分级结构。由于聚多巴胺(PDA)在体系中发挥的多重作用,该分级结构表现出显著增强的吸波性能以及更好的柔性成膜特性。PDA/PPy/ND的最佳反射损耗(RL)峰值在7.58 GHz时可达-43.6 dB,这主要归因于多重介电损耗途径和显著改善的阻抗匹配特性。此外,由于氢键交联,PDA的引入还促进了PDA/PPy/ND在聚乙烯醇(PVA)基体中的成膜和分散,形成了一种防水且柔性的薄膜。这项工作为轻质吸波材料的设计和实际应用提供了一条参考路径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e24d/9146107/0ad9da12f05d/polymers-14-02014-g001.jpg

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