Oxidization resistance of Zn nano-powders

被引:0
|
作者
Xia, Hui
Wu, Run
Hu, Jun-hui
Xie, Chang-sheng
机构
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Zinc nanopowder was produced by evaporating pure zinc raw material in the vacuum condition using Laser-inductive multiple heating method. The average diameter of Zn nanoparticles produced is about 40 nm. The powder was heat treated at different temperatures in air and the influence of heat treatment on the crystal structure and morphology was examined by X-ray diffraction and transmission electron microscopy. Differential scanning calorimetry was also used in Ar and O2 respectively to make a further explanation for the oxidization resistance of the Zn nanopowder. It was found that the appropriate surface passivation treatment could effectively suppress Zn nanopowder from being further oxidized below the melting point. Therefore the Zn nanoparticles showed relatively good oxidization resistance in the experiment.
引用
收藏
页码:502 / 505
相关论文
共 50 条
  • [31] Elaboration of boehmite nano-powders by spray-pyrolysis
    Caiut, J. M. A.
    Dexpert-Ghys, J.
    Kihn, Y.
    Verelst, M.
    Dexpert, H.
    Ribeiro, S. J. L.
    Messaddeq, Y.
    POWDER TECHNOLOGY, 2009, 190 (1-2) : 95 - 98
  • [32] Effects of aging on the characteristics of Nd:YAG nano-powders
    Zhang, Xiaolin
    Liu, Duo
    Sang, Yuanhua
    Liu, Hong
    Wang, Jiyang
    JOURNAL OF ALLOYS AND COMPOUNDS, 2010, 502 (01) : 206 - 210
  • [33] Preparation of ITO nano-powders by hydrothermal-calcining process
    古映莹
    秦利平
    刘雪颖
    Journal of Central South University of Technology(English Edition), 2006, (04) : 389 - 392
  • [34] P-doped carbon nano-powders for fingerprint imaging
    Algarra, Manuel
    Bartolic, Dragana
    Radotic, Ksenija
    Mutavdzic, Dragosav
    Soledad Pino-Gonzalez, Md.
    Rodriguez-Castellon, Enrique
    Manuel Lazaro-Martinez, Juan
    Jose Guerrero-Gonzalez, Juan
    Esteves da Silva, Joaquim C. G.
    Jimenez-Jimenez, Jose
    TALANTA, 2019, 194 : 150 - 157
  • [35] Effect of processing on the particle size of tin oxide nano-powders
    Meenakshi Choudhary
    Nitish Kumar Singh
    R. Dwivedi
    V. N. Mishra
    Journal of Materials Science: Materials in Electronics, 2013, 24 : 752 - 757
  • [36] Effect of the cold forming processes on the sintering of alumina nano-powders
    Arellano, A.
    Lemus-Ruiz, J.
    Bouvard, D.
    Diaz de la Torre, S.
    Olmos, L.
    BOLETIN DE LA SOCIEDAD ESPANOLA DE CERAMICA Y VIDRIO, 2013, 52 (05): : XIX - XXII
  • [37] Preparation of lanthanum zirconate nano-powders by Molten Salts method
    Wang, Xueying
    Zhu, Yongping
    Zhang, Weigang
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2010, 356 (20-22) : 1049 - 1051
  • [38] Galerkin method for simulating the solidification of water in existence of nano-powders
    Abu-Hamdeh, Nidal H.
    Basem, Ali
    AL-bonsrulah, Hussein A. Z.
    Khoshaim, Ahmed
    Albdeiri, Mahmood Shaker
    Alghawli, Abed Saif
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2024, 149 (23) : 14163 - 14174
  • [39] Hall-petch type behavior of milled nano-powders
    Danila, M.
    Radoi, R.
    Licea, I.
    2006 INTERNATIONAL SEMICONDUCTOR CONFERENCE, VOLS 1 AND 2, 2007, : 67 - +
  • [40] Preparation of ITO nano-powders by hydrothermal-calcining process
    Ying-ying Gu
    Li-ping Qin
    Xue-ying Liu
    Journal of Central South University of Technology, 2006, 13 : 389 - 392