Synthesis of a Bulk Ti4SiC3 MAX Phase by Reduction of TiO2 with SiC

被引:24
|
作者
Istomin, Pavel [1 ]
Istomina, Elena [1 ]
Nadutkin, Aleksandr [1 ]
Grass, Vladislav [1 ]
Presniakov, Mikhail [2 ]
机构
[1] Russian Acad Sci, Inst Chem, Ural Branch, Komi Sci Ctr, Pervomaiskaya 48, Syktyvkar 167982, Russia
[2] NRC Kurchatov Inst, Kurchatov Sq 1, Moscow 123182, Russia
基金
俄罗斯基础研究基金会;
关键词
THERMODYNAMIC CALCULATION; NANOCOMPOSITE POWDER; RAPID SYNTHESIS; TI3SIC2; CARBIDE; SHS; FABRICATION; COMPOUND; GROWTH; AL;
D O I
10.1021/acs.inorgchem.6b01601
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The bulk MAX phase Ti4SiC3 was first synthesized with a yield of 86% by a long-time thermal treatment of TiO2 and SiC powder mixture with a molar ratio of 2:3 at 1600 degrees C under vacuum conditions. It was found that the appearance of Ti4SiC3 was preceded by the formation of TiC and Ti4SiC2 as a result of the following reactions: (1) combined carbothermic and silicothermic reduction of TiO2 to TiC accompanied by evolution of SiO and CO gases; (2) silicidation of TiC with gaseous SiO, leading to the growth of Ti4SiC2. It was suggested that, apart from TiC and Ti4SiC2 solids, sublimed gaseous species such as Ti, Si, Si2C, SiC2, etc., could take part in the Ti4SiC3 formation that occurred in the next stage. The crystal structure of synthesized Ti4SiC3 was refined by X-ray diffraction Rietveld analysis and confirmed by high resolution scanning transmission electron microscopy. The measured structural characteristics of bulk Ti4SiC3 are in good agreement with those predicted by ab initio calculations reported in the literature.
引用
收藏
页码:11050 / 11056
页数:7
相关论文
共 50 条
  • [1] Fabrication of Ti3SiC2 and Ti4SiC3 MAX phase ceramics through reduction of TiO2 with SiC
    Istomin, Pavel
    Istomina, Elena
    Nadutkin, Aleksandr
    Grass, Vladislav
    Leonov, Aleksandr
    Kaplan, Mikhail
    Presniakov, Mikhail
    CERAMICS INTERNATIONAL, 2017, 43 (18) : 16128 - 16135
  • [2] Optimization of the Carbosilicothermic Synthesis of the Ti4SiC3 MAX Phase
    Istomina, E. I.
    Istomin, P. V.
    Nadutkin, A. V.
    Grass, V. E.
    Bogdanova, A. S.
    INORGANIC MATERIALS, 2018, 54 (06) : 528 - 536
  • [3] Optimization of the Carbosilicothermic Synthesis of the Ti4SiC3 MAX Phase
    E. I. Istomina
    P. V. Istomin
    A. V. Nadutkin
    V. E. Grass
    A. S. Bogdanova
    Inorganic Materials, 2018, 54 : 528 - 536
  • [4] Fabrication of Ti3SiC2-Ti4SiC3-SiC ceramic composites through carbosilicothermic reduction of TiO2
    Istomin, Pavel
    Istomina, Elena
    Nadutkin, Aleksandr
    Grass, Vladislav
    Kaplan, Mikhail
    INTERNATIONAL JOURNAL OF APPLIED CERAMIC TECHNOLOGY, 2019, 16 (02) : 746 - 752
  • [5] Resistivity scaling in epitaxial MAX-phase Ti4SiC3(0001) layers
    Zhang, Minghua
    Kumar, Sushant
    Sundararaman, Ravishankar
    Gall, Daniel
    JOURNAL OF APPLIED PHYSICS, 2021, 130 (03)
  • [6] Quantum-chemical modelling of nanotubes of titanium silicocarbides Ti2SiC, Ti3SiC2, and Ti4SiC3
    Enyashin, A. N.
    Ivanovskii, A. L.
    THEORETICAL AND EXPERIMENTAL CHEMISTRY, 2009, 45 (02) : 98 - 102
  • [7] Synthesis of the Ti3SiC2 MAX Phase via Combustion in the TiO2–Mg–Si–C System
    V. I. Vershinnikov
    D. Yu. Kovalev
    Inorganic Materials, 2020, 56 : 1211 - 1216
  • [8] Quantum-chemical modelling of nanotubes of titanium silicocarbides Ti2SiC, Ti3SiC2, and Ti4SiC3
    A. N. Enyashin
    A. L. Ivanovskii
    Theoretical and Experimental Chemistry, 2009, 45 : 98 - 102
  • [9] Optimization of the Ti3SiC2 MAX phase synthesis
    El Saeed, M. A.
    Deorsola, F. A.
    Rashad, R. M.
    INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS, 2012, 35 : 127 - 131
  • [10] How bulk and surface properties of Ti4SiC3, V4SiC3, Nb4SiC3 and Zr4SiC3 tune reactivity: a computational study
    Quesne, Matthew G.
    Catlow, C. Richard A.
    de Leeuw, Nora H.
    FARADAY DISCUSSIONS, 2021, 230 (00) : 87 - 99