Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation

Highlights 3D cubic hollow core–shell NiCo2O4@C composites were synthesized. Oxygen vacancies were introduced into the prepared composites. Ultrabroad effective absorption bandwidth of 12.48 GHz was obtained. The absorption performance mechanism of NiCo2O4/C composites was investigated.

Bibliographic Details
Main Authors: Fushan Li, Nannan Wu, Hideo Kimura, Yuan Wang, Ben Bin Xu, Ding Wang, Yifan Li, Hassan Algadi, Zhanhu Guo, Wei Du, Chuanxin Hou
Format: Article
Language:English
Published: SpringerOpen 2023-10-01
Series:Nano-Micro Letters
Subjects:
Online Access:https://doi.org/10.1007/s40820-023-01197-0
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author Fushan Li
Nannan Wu
Hideo Kimura
Yuan Wang
Ben Bin Xu
Ding Wang
Yifan Li
Hassan Algadi
Zhanhu Guo
Wei Du
Chuanxin Hou
author_facet Fushan Li
Nannan Wu
Hideo Kimura
Yuan Wang
Ben Bin Xu
Ding Wang
Yifan Li
Hassan Algadi
Zhanhu Guo
Wei Du
Chuanxin Hou
author_sort Fushan Li
collection DOAJ
description Highlights 3D cubic hollow core–shell NiCo2O4@C composites were synthesized. Oxygen vacancies were introduced into the prepared composites. Ultrabroad effective absorption bandwidth of 12.48 GHz was obtained. The absorption performance mechanism of NiCo2O4/C composites was investigated.
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spelling doaj.art-bb075ec9b6ce47f0b478e6e446c42f052023-11-20T10:39:41ZengSpringerOpenNano-Micro Letters2311-67062150-55512023-10-0115111410.1007/s40820-023-01197-0Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects ModulationFushan Li0Nannan Wu1Hideo Kimura2Yuan Wang3Ben Bin Xu4Ding Wang5Yifan Li6Hassan Algadi7Zhanhu Guo8Wei Du9Chuanxin Hou10School of Environmental and Material Engineering, Yantai UniversitySchool of Material Science and Engineering, Shandong University of Science and TechnologySchool of Environmental and Material Engineering, Yantai UniversityMechanical and Construction Engineering, Faculty of Engineering and Environment, Northumbria UniversityMechanical and Construction Engineering, Faculty of Engineering and Environment, Northumbria UniversityMechanical and Construction Engineering, Faculty of Engineering and Environment, Northumbria UniversityMechanical and Construction Engineering, Faculty of Engineering and Environment, Northumbria UniversityCollege of Materials Science and Engineering, Taiyuan University of Science and TechnologyMechanical and Construction Engineering, Faculty of Engineering and Environment, Northumbria UniversitySchool of Environmental and Material Engineering, Yantai UniversitySchool of Environmental and Material Engineering, Yantai UniversityHighlights 3D cubic hollow core–shell NiCo2O4@C composites were synthesized. Oxygen vacancies were introduced into the prepared composites. Ultrabroad effective absorption bandwidth of 12.48 GHz was obtained. The absorption performance mechanism of NiCo2O4/C composites was investigated.https://doi.org/10.1007/s40820-023-01197-0Electromagnetic wave absorberNiCo2O4@C MicrocubesOxygen vacancyEffective absorption bandwidth
spellingShingle Fushan Li
Nannan Wu
Hideo Kimura
Yuan Wang
Ben Bin Xu
Ding Wang
Yifan Li
Hassan Algadi
Zhanhu Guo
Wei Du
Chuanxin Hou
Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation
Nano-Micro Letters
Electromagnetic wave absorber
NiCo2O4@C Microcubes
Oxygen vacancy
Effective absorption bandwidth
title Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation
title_full Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation
title_fullStr Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation
title_full_unstemmed Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation
title_short Initiating Binary Metal Oxides Microcubes Electromagnetic Wave Absorber Toward Ultrabroad Absorption Bandwidth Through Interfacial and Defects Modulation
title_sort initiating binary metal oxides microcubes electromagnetic wave absorber toward ultrabroad absorption bandwidth through interfacial and defects modulation
topic Electromagnetic wave absorber
NiCo2O4@C Microcubes
Oxygen vacancy
Effective absorption bandwidth
url https://doi.org/10.1007/s40820-023-01197-0
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