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具有还原氧化石墨烯的超宽带共价连接核壳结构CoFeO@PPy纳米颗粒用于微波吸收

Ultra-broadband and covalently linked core-shell CoFeO@PPy nanoparticles with reduced graphene oxide for microwave absorption.

作者信息

Ding Ling, Zhao Xiaoxiao, Huang Ying, Yan Jing, Li Tiehu, Liu Panbo

机构信息

The MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions, Ministry of Education, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710129, PR China.

The MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions, Ministry of Education, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710129, PR China.

出版信息

J Colloid Interface Sci. 2021 Aug;595:168-177. doi: 10.1016/j.jcis.2021.03.019. Epub 2021 Mar 10.

DOI:10.1016/j.jcis.2021.03.019
PMID:33819692
Abstract

Covalent bond usually ensures a stable connection between nonmetallic atoms. However, the traditional reflux method usually requires the construction of complex instruments and equipment with tedious steps to ensure airtightness and reaction stability. In this work, an advanced method is adopted to bind core-shell CoFeO@PPy and rGO tightly via the aid of 2-(1H-pyrrol-1-yl)ethanamine (PyEA), dispense with a high-temperature environment or protective gas. Cobalt ferrite core and polypyrrole shell collaborate to approach suitable magnetic and conduction loss, while reduced graphene oxide usually provides a stable sheet structure for interface multiple reflections, and replenish the insufficient dielectric loss. The filled biscuit-shaped covalently bond CoFeO@PPy-rGO has a fantastically broad absorption bandwidth of 13.12 GHz under the thickness of 3.6 mm, together with a minimum reflection loss of -50.1 dB at 6.56 GHz, achieving both impedance matching and attenuation matching, and effectively responding to all electromagnetic waves in the X and Ku bands. Thus, the covalently bonded CoFeO@PPy-rGO has potential application in broadband absorption.

摘要

共价键通常确保非金属原子之间的稳定连接。然而,传统的回流方法通常需要构建复杂的仪器设备,步骤繁琐,以确保气密性和反应稳定性。在这项工作中,采用了一种先进的方法,借助2-(1H-吡咯-1-基)乙胺(PyEA)将核壳结构的CoFeO@PPy和rGO紧密结合,无需高温环境或保护气体。钴铁氧体核和聚吡咯壳协同作用,实现合适的磁损耗和传导损耗,而还原氧化石墨烯通常为界面多次反射提供稳定的片状结构,并补充不足的介电损耗。填充的饼干形状的共价键合CoFeO@PPy-rGO在厚度为3.6毫米时具有13.12吉赫兹的极宽吸收带宽,在6.56吉赫兹时最小反射损耗为-50.1分贝,实现了阻抗匹配和衰减匹配,并有效响应X和Ku波段的所有电磁波。因此,共价键合的CoFeO@PPy-rGO在宽带吸收方面具有潜在应用。

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