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NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption

To reduce electromagnetic pollution as well as increase the accuracy of high-precision electronic equipment, more attention has been paid to new electromagnetic wave (EMW) absorbing materials, which have the advantages of strong absorption, wide absorption bands, and a narrow thickness. In this stud...

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Autores principales: Zhang, Zhi, Lv, Qi, Chen, Yiwang, Yu, Haitao, Liu, Hui, Cui, Guangzhen, Sun, Xiaodong, Li, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630302/
https://www.ncbi.nlm.nih.gov/pubmed/31159349
http://dx.doi.org/10.3390/nano9060833
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author Zhang, Zhi
Lv, Qi
Chen, Yiwang
Yu, Haitao
Liu, Hui
Cui, Guangzhen
Sun, Xiaodong
Li, Ling
author_facet Zhang, Zhi
Lv, Qi
Chen, Yiwang
Yu, Haitao
Liu, Hui
Cui, Guangzhen
Sun, Xiaodong
Li, Ling
author_sort Zhang, Zhi
collection PubMed
description To reduce electromagnetic pollution as well as increase the accuracy of high-precision electronic equipment, more attention has been paid to new electromagnetic wave (EMW) absorbing materials, which have the advantages of strong absorption, wide absorption bands, and a narrow thickness. In this study, a novel ternary type of the NiS(2)@rGO/polypyrrole (PPy) sandwich-like structured composites was synthesized via a facile two-step method, in which the hydrothermal method was used to prepare NiS(2)@rGO binary composites and then the in situ polymerization method was used to synthesize the PPy, which acted as the outer layer of the sandwich-like structure. The morphologies and electromagnetic absorption performance of the NiS(2)@rGO/PPy were measured and investigated. A sample with 6 wt% NiS(2)@rGO/PPy loading paraffin-composite obtained an outstanding reflection loss (RL) of −58.7 dB at 16.44 GHz under a thickness of 2.03 mm. Simultaneously, the effective electromagnetic wave absorption bandwidth for RL < −10 dB, which covered 7.04 to 18.00 GHz (10.96 GHz), was achieved by changing the thickness of the absorber from 2.0 to 3.5 mm. The results not only suggest that the NiS(2)@rGO/PPy composite has excellent performance in the field of EMW absorption but also prove that the novel sandwich-like structure can contribute to appropriate impedance matching through multiple relaxation and interfacial polarization processes.
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spelling pubmed-66303022019-08-19 NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption Zhang, Zhi Lv, Qi Chen, Yiwang Yu, Haitao Liu, Hui Cui, Guangzhen Sun, Xiaodong Li, Ling Nanomaterials (Basel) Article To reduce electromagnetic pollution as well as increase the accuracy of high-precision electronic equipment, more attention has been paid to new electromagnetic wave (EMW) absorbing materials, which have the advantages of strong absorption, wide absorption bands, and a narrow thickness. In this study, a novel ternary type of the NiS(2)@rGO/polypyrrole (PPy) sandwich-like structured composites was synthesized via a facile two-step method, in which the hydrothermal method was used to prepare NiS(2)@rGO binary composites and then the in situ polymerization method was used to synthesize the PPy, which acted as the outer layer of the sandwich-like structure. The morphologies and electromagnetic absorption performance of the NiS(2)@rGO/PPy were measured and investigated. A sample with 6 wt% NiS(2)@rGO/PPy loading paraffin-composite obtained an outstanding reflection loss (RL) of −58.7 dB at 16.44 GHz under a thickness of 2.03 mm. Simultaneously, the effective electromagnetic wave absorption bandwidth for RL < −10 dB, which covered 7.04 to 18.00 GHz (10.96 GHz), was achieved by changing the thickness of the absorber from 2.0 to 3.5 mm. The results not only suggest that the NiS(2)@rGO/PPy composite has excellent performance in the field of EMW absorption but also prove that the novel sandwich-like structure can contribute to appropriate impedance matching through multiple relaxation and interfacial polarization processes. MDPI 2019-05-31 /pmc/articles/PMC6630302/ /pubmed/31159349 http://dx.doi.org/10.3390/nano9060833 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Zhi
Lv, Qi
Chen, Yiwang
Yu, Haitao
Liu, Hui
Cui, Guangzhen
Sun, Xiaodong
Li, Ling
NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption
title NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption
title_full NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption
title_fullStr NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption
title_full_unstemmed NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption
title_short NiS(2)@rGO Nanosheet Wrapped with PPy Aerogel: A Sandwich-Like Structured Composite for Excellent Microwave Absorption
title_sort nis(2)@rgo nanosheet wrapped with ppy aerogel: a sandwich-like structured composite for excellent microwave absorption
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630302/
https://www.ncbi.nlm.nih.gov/pubmed/31159349
http://dx.doi.org/10.3390/nano9060833
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