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Preparation and Characterization of Carbon-encapsulated Cobalt () Oxide Nanoparticles
Zhu, Xueliang1,2; Wei, Zhiqiang1,2; Bai, Junshan2; Zhao, Wenhua2; Feng, Wangjun2; Jiang, Jinlong2
2018-02-25
发表期刊Cailiao Daobao/Materials Review
ISSN1005023X
卷号32期号:2页码:621-625
摘要Carbon-encapsulated CoO core-shell structure nanoparticles were successfully prepared by DC arc discharge plasma technique. The product was characterized by high resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), and X-ray energy dispersive spectrometry (XEDS). Raman spectroscopy and low-temperature N2 adsorption/desorption were employed to determine the morphology, crystal structure, specific area, and pore structure of the nanoparticles. HRTEM indicated that the carbon-encapsulated CoO nanoparticles prepared by this method possess typical core shell structure. The particle morphology exhibits spherical or ellipsoidal structure with uniform particle size and good dispersion. The particle size distribution is in the range of 20-60 nm, the average particle size is 40 nm, and the thickness of the shell carbon layer is about 5 nm. XRD studies demonstrate that the core of the particles is CoO with face-centered cubic structure CoO, and the outer shell is disordered carbon layer. XEDS spectra confirmed the presence of Co, O and C elements in the sample. Raman spectrum showed the low degree of graphite in the sample and the occurrence of red shift phenomenon. The N2 adsorption and desorption isotherm belongs to type , the BET specific surface area is 33 m2/g, the BJH desorption cumulative pore volume and desorption average pore size are 0.078 cm3/g and 11 nm, respectively. The equivalent particle size is 43 nm, which is consistent with the results measured by TEM and XRD. © 2018, Materials Review Magazine. All right reserved.
关键词Adsorption isotherms Carbon Cobalt Cobalt compounds Desorption High resolution transmission electron microscopy Morphology Nanoparticles Particle size Particle size analysis Pore size Pore structure Red Shift Shells (structures) Specific surface area Temperature X ray diffraction Average particle size BET specific surface area Carbon-encapsulated Core shell structure Equivalent particle size Face centered cubic structure Particle morphologies X-ray energy dispersive spectrometry
DOI10.11896/j.issn.1005-023X.2018.04.023
收录类别EI
语种中文
出版者Cailiao Daobaoshe/ Materials Review
EI入藏号20183505757898
EI主题词Crystal structure
EI分类号408.2 Structural Members and Shapes - 549.3 Nonferrous Metals and Alloys excluding Alkali and Alkaline Earth Metals - 641.1 Thermodynamics - 741.3 Optical Devices and Systems - 761 Nanotechnology - 802.3 Chemical Operations - 804 Chemical Products Generally - 931.2 Physical Properties of Gases, Liquids and Solids - 933 Solid State Physics - 933.1.1 Crystal Lattice - 951 Materials Science
来源库Compendex
分类代码408.2 Structural Members and Shapes - 549.3 Nonferrous Metals and Alloys excluding Alkali and Alkaline Earth Metals - 641.1 Thermodynamics - 741.3 Optical Devices and Systems - 761 Nanotechnology - 802.3 Chemical Operations - 804 Chemical Products Generally - 931.2 Physical Properties of Gases, Liquids and Solids - 933 Solid State Physics - 933.1.1 Crystal Lattice - 951 Materials Science
引用统计
文献类型期刊论文
条目标识符https://ir.lut.edu.cn/handle/2XXMBERH/113819
专题理学院
作者单位1.State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals, Lanzhou University of Technology, Lanzhou; 730050, China;
2.School of Science, Lanzhou University of Technology, Lanzhou; 730050, China
第一作者单位兰州理工大学
第一作者的第一单位兰州理工大学
推荐引用方式
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Zhu, Xueliang,Wei, Zhiqiang,Bai, Junshan,et al. Preparation and Characterization of Carbon-encapsulated Cobalt () Oxide Nanoparticles[J]. Cailiao Daobao/Materials Review,2018,32(2):621-625.
APA Zhu, Xueliang,Wei, Zhiqiang,Bai, Junshan,Zhao, Wenhua,Feng, Wangjun,&Jiang, Jinlong.(2018).Preparation and Characterization of Carbon-encapsulated Cobalt () Oxide Nanoparticles.Cailiao Daobao/Materials Review,32(2),621-625.
MLA Zhu, Xueliang,et al."Preparation and Characterization of Carbon-encapsulated Cobalt () Oxide Nanoparticles".Cailiao Daobao/Materials Review 32.2(2018):621-625.
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