• Journal of Inorganic Materials
  • Vol. 34, Issue 4, 439 (2019)
Xiao XIE, Yin SUI, Xiao-Yu HUANG, and Chen-Guang ZHU*
Author Affiliations
  • School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China
  • show less
    DOI: 10.15541/jim20180244 Cite this Article
    Xiao XIE, Yin SUI, Xiao-Yu HUANG, Chen-Guang ZHU. Synthesis of AlN by Direct Combustion of Mg-Al Alloy Powder[J]. Journal of Inorganic Materials, 2019, 34(4): 439 Copy Citation Text show less
    References

    [1] YONG-QIN HE, XIAO-YUN LI, JING-XIAN ZHANG et al. In situ pyrolyzed carbon on the property of AlN-based microwave attenuation ceramics. Journal of Inorganic Materials, 33, 421-426(2018).

    [2] CHING-SUNG LEE, WEI-CHOU HSU, HAN-YIN LIU et al. Al2O3-dielectric In0.18Al0.82N/AlN/GaN/Si metal-oxide-semi- conductor heterostructure field-effect transistors with backside substrate metal-trench structure. IEEE Journal of the Electron Devices Society, 6, 68-73(2017).

    [3] CHENG WANG, JI-SHENG LI, LIANG-GE XU et al. Preparation of aluminum nitride ceramic circuit substrate with double-edged heterogeneous treatment. China Ceramics, 54, 50-55(2018).

    [4] JIE WANG, ZHAN-YING ZHANG, XIN-LÜ LÜ. Current research status and prospect of synthesis methods of aluminum nitride powder. Bulletin of the Chinese Ceramic Society, 29, 1098-1102(2010).

    [5] M RADWAN, M BAHGAT. A modified direct nitridation method for formation of nano-AlN whiskers. Journal of Materials Processing Tech, 181, 99-105(2007).

    [6] M RADWAN, M BAHGAT, A EL-GEASSY A. Formation of aluminum nitride whiskers by direct nitridation. Journal of the European Ceramic Society, 26, 2485-2488(2006).

    [8] HAO-YANG WU, MING-LI QIN, AI-MIN CHU et al. AlN powder synthesis by sodium fluoride-assisted carbothermal combustion. Ceramics International, 40, 14447-14452(2014).

    [9] A GROMOV, V VERESHCHAGIN. Study of aluminum nitride formation by superfine aluminum powder combustion in air. Journal of the European Ceramic Society, 24, 2879-2884(2004).

    [10] V MOSTOVSHCHIKOV A, P ILYIN A, N SHMAKOV A et al. Investigation of the aluminum nitride formation during the aluminum nanopowder combustion in air. Physics Procedia, 84, 302-306(2016).

    [11] Y ALY, L DREIZIN E. Ignition and combustion of Al·Mg alloy powders prepared by different techniques. Combustion & Flame, 162, 1440-1447(2015).

    [12] S SHIH T, H WANG J, Z CHONG K. Combustion of magnesium alloys in air. Materials Chemistry & Physics, 85, 302-309(2004).

    [13] H NIE, M SCHOENITZ, L DREIZIN E. Oxidation of differently prepared Al-Mg alloy powders in oxygen. Journal of Alloys & Compounds, 685, 402-410(2016).

    [14] M POPENKO E, A GROMOV A, I PAUTOVA Y et al. SEM-EDX study of the crystal structure of the condensed combustion products of the aluminum nanopowder burned in air under the different pressures. Applied Surface Science, 257, 3641-3644(2011).

    Xiao XIE, Yin SUI, Xiao-Yu HUANG, Chen-Guang ZHU. Synthesis of AlN by Direct Combustion of Mg-Al Alloy Powder[J]. Journal of Inorganic Materials, 2019, 34(4): 439
    Download Citation