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Gaseous detonation synthesis of Co@C nanoparticles/CNTs materials
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Indexed by:Journal Article

Date of Publication:2019-02-01

Journal:MATERIALS LETTERS

Included Journals:Scopus、SCIE

Volume:236

Page Number:179-182

ISSN:0167-577X

Key Words:Carbon materials; Co@C; Carbon nanotubes; Gaseous detonation; Raman

Abstract:Co@C/CNTs magnetic carbon nanomaterials were fabricated by a gaseous detonation method with cobalt (III) acetylacetonate (Co(acac)(3)) as precursor and a mixture gas of hydrogen and oxygen as explosion source. The current work investigates how proportion of oxygen in the mixture gas affects the morphologies, phases, and degree of graphitization of Co@C/CNTs nanomaterials. The characterization of transmission electron microscopy indicates that the samples were consisted of core-shell nanoparticles and nanotubes, and the proportion of oxygen had little influence on the morphologies of the samples. X-ray diffraction and Raman spectra analysis demonstrate that the core-shell particles and nanotubes were Co@C and CNTs, respectively. The cobalt nanoparticles generated from the decomposition of Co(acac)(3) would be oxidized to CoO when the proportion of oxygen was greater than 50% in the mixture gas. Though the degree of graphitization of Co@C/CNTs nanomaterials was little affected by the proportion of oxygen, the particle size of Co@C increased with the increase of the proportion of oxygen in the mixture gas, simultaneously, the carbon matrix was decreased. (C) 2018 Elsevier B.V. All rights reserved.

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Supervisor of Doctorate Candidates
Supervisor of Master's Candidates

Academic Titles:Vice President, China Society of Explosives and Blasting

Other Post:中国爆破行业协会副会长

Gender:Male

Alma Mater:Dalian University of Technology

Degree:Doctoral Degree

School/Department:School of Mechanics and Aerospace Enginnering

Discipline:Engineering Mechanics. Applied and Experimental Mechanics. Biomechanics and Nanomechanics. Aerospace Mechanics and Engineering. Mechanical Engineering. Aerospace Science and Technology

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