Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties

Highlights Hierarchical cubic sea urchin-like yolk-shell CoNi@N-doped carbon (NC)-CoNi@carbon nanotubes (CNTs) mixed-dimensional MCNCs with different CNTs contents could be availably and selectively synthesized. Owing to the generated hierarchical cubic sea urchin like yolk-shell structure, CoNi@NC-...

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Main Authors: Qiqin Liang, Mukun He, Beibei Zhan, Hua Guo, Xiaosi Qi, Yunpeng Qu, Yali Zhang, Wei Zhong, Junwei Gu
Format: Article
Language:English
Published: SpringerOpen 2025-02-01
Series:Nano-Micro Letters
Subjects:
Online Access:https://doi.org/10.1007/s40820-024-01626-8
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author Qiqin Liang
Mukun He
Beibei Zhan
Hua Guo
Xiaosi Qi
Yunpeng Qu
Yali Zhang
Wei Zhong
Junwei Gu
author_facet Qiqin Liang
Mukun He
Beibei Zhan
Hua Guo
Xiaosi Qi
Yunpeng Qu
Yali Zhang
Wei Zhong
Junwei Gu
author_sort Qiqin Liang
collection DOAJ
description Highlights Hierarchical cubic sea urchin-like yolk-shell CoNi@N-doped carbon (NC)-CoNi@carbon nanotubes (CNTs) mixed-dimensional MCNCs with different CNTs contents could be availably and selectively synthesized. Owing to the generated hierarchical cubic sea urchin like yolk-shell structure, CoNi@NC-CoNi@CNTs display marvelous hydrophobic, corrosion resistance and MA performance. The construction of components and special microstructure make CoNi@NC-CoNi@CNTs MCNCs display terrific photothermal and antimicrobial (e g. only 1 mg·mL-1 concentration, ~84.03% antimicrobial rate) proper ties.
format Article
id doaj-art-e021cf69f9f748ed863d6cea551e376c
institution Kabale University
issn 2311-6706
2150-5551
language English
publishDate 2025-02-01
publisher SpringerOpen
record_format Article
series Nano-Micro Letters
spelling doaj-art-e021cf69f9f748ed863d6cea551e376c2025-08-20T04:02:56ZengSpringerOpenNano-Micro Letters2311-67062150-55512025-02-0117111810.1007/s40820-024-01626-8Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial PropertiesQiqin Liang0Mukun He1Beibei Zhan2Hua Guo3Xiaosi Qi4Yunpeng Qu5Yali Zhang6Wei Zhong7Junwei Gu8College of Physics, Guizhou Province Key Laboratory for Photoelectrics Technology and Application, Guizhou UniversityShaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical UniversityCollege of Physics, Guizhou Province Key Laboratory for Photoelectrics Technology and Application, Guizhou UniversityShaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical UniversityCollege of Physics, Guizhou Province Key Laboratory for Photoelectrics Technology and Application, Guizhou UniversityCollege of Physics, Guizhou Province Key Laboratory for Photoelectrics Technology and Application, Guizhou UniversityCollege of Physics, Guizhou Province Key Laboratory for Photoelectrics Technology and Application, Guizhou UniversityNational Laboratory of Solid State Microstructures and Jiangsu Provincial Laboratory for NanoTechnology, Nanjing UniversityShaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical UniversityHighlights Hierarchical cubic sea urchin-like yolk-shell CoNi@N-doped carbon (NC)-CoNi@carbon nanotubes (CNTs) mixed-dimensional MCNCs with different CNTs contents could be availably and selectively synthesized. Owing to the generated hierarchical cubic sea urchin like yolk-shell structure, CoNi@NC-CoNi@CNTs display marvelous hydrophobic, corrosion resistance and MA performance. The construction of components and special microstructure make CoNi@NC-CoNi@CNTs MCNCs display terrific photothermal and antimicrobial (e g. only 1 mg·mL-1 concentration, ~84.03% antimicrobial rate) proper ties.https://doi.org/10.1007/s40820-024-01626-8Sea urchinLike yolkShell structureCoNi@NDoped carbonCoNi@carbon nanotubes
spellingShingle Qiqin Liang
Mukun He
Beibei Zhan
Hua Guo
Xiaosi Qi
Yunpeng Qu
Yali Zhang
Wei Zhong
Junwei Gu
Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties
Nano-Micro Letters
Sea urchin
Like yolk
Shell structure
CoNi@N
Doped carbon
CoNi@carbon nanotubes
title Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties
title_full Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties
title_fullStr Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties
title_full_unstemmed Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties
title_short Yolk–Shell CoNi@N-Doped Carbon-CoNi@CNTs for Enhanced Microwave Absorption, Photothermal, Anti-Corrosion, and Antimicrobial Properties
title_sort yolk shell coni n doped carbon coni cnts for enhanced microwave absorption photothermal anti corrosion and antimicrobial properties
topic Sea urchin
Like yolk
Shell structure
CoNi@N
Doped carbon
CoNi@carbon nanotubes
url https://doi.org/10.1007/s40820-024-01626-8
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