Regulation of PPy Growth States by Employing Porous Organic Polymers to Obtain Excellent Microwave Absorption Performance

Author:

Zhang Liwen12,Du Jiawei12,Tang Peng12,Zhao Xueying12,Hu Chuangwei12,Dong Yu12,Zhang Xuyang12,Liu Nana12,Wang Bo12,Peng Ruihui12,Zhang Yaohong3ORCID,Wu Guohua124ORCID

Affiliation:

1. Qingdao Innovation and Development Base of Harbin Engineering University Harbin Engineering University Harbin 150001 China

2. Qingdao Innovation and Development Center Harbin Engineering University Qingdao 266000 China

3. School of Physics Northwest University Xi'an 710127 China

4. The Key Laboratory of Functional Molecular Solids Ministry of Education Anhui 241000 China

Abstract

AbstractRegulating the different growth states of polypyrrole (PPy) is a key strategy for obtaining PPy composites with high electromagnetic wave (EMW) absorption properties. This work finds that the growth states of PPy is regulated by controlling the amount of pyrrole added during the preparation of composites, so as to regulate the development of conductive networks to obtain excellent EMW absorption performance. The POP/PPy‐200 composite achieves an effective absorption bandwidth (EAB) of 6.24 GHz (11.76–18.00 GHz) at a thickness of only 2.34 mm, covering 100% of the Ku band. The minimum reflection loss of −73.05 dB can be demonstrated at a thickness of only 2.29 mm, while at the same time showing an EAB of 5.96 GHz to meet the requirements of “thin”, “light”, “wide”, and “strong”. Such excellent EMW absorption performance is attributed to the conductive loss caused by the regulation of the growth states of PPy and the polarization loss caused by the heterostructure. This work also addresses the key challenge that porous organic polymers (POPs) cannot be applied to EMW absorption due to poor conductivity and providing new insights into the candidates for EMW absorbing materials.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Key Laboratory of Functional Molecular Solids, Ministry of Education of the People's Republic of China

Publisher

Wiley

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