Synthesis of Magnéli phases in a high-speed electric discharge plasma jet

被引:0
|
作者
Shanenkov, I. I. [1 ,2 ]
Nikitin, D. S. [2 ]
Nassyrbayev, A. R. [2 ]
Tsimmerman, A. I. [2 ]
Sivkov, A. A. [2 ]
机构
[1] Tyumen State Univ, 6 Volodarsky St, Tyumen 625003, Russia
[2] Natl Res Tomsk Polytech Univ, 30 Lenin Ave, Tomsk 634050, Russia
关键词
titanium oxide; Magn & eacute; li phases; plasma dynamic synthesis; electric discharge plasma; nanoparticles; electron microscopy; X-ray diffraction; MAGNELI-PHASES; TIO2;
D O I
10.18799/24131830/2024/11/4847
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Relevance. Currently, there is an active search for photocatalytic materials suitable for water decomposition and hydrogen production that exhibit activity when exposed to visible light, and are also accessible, chemically stable and safe. In this regard, a number of materials with the general formula TinO2n-1 (n=2-10) are distinguished, they are called Magn & eacute;li phases. Despite the fact that Magn & eacute;li phases exhibit significantly higher photocatalytic activity compared to traditional titanium oxides (rutile, anatase, brookite), their practical application is currently extremely difficult due to the complexity of their synthesis. Promising approaches are those that provide well-controlled conditions with the possibility of rapid stabilization of the system, among which plasma synthesis methods stand out. Aim. To develop a method for synthesizing a product containing Magn & eacute;li phases in a high-speed jet of electric discharge plasma. Objects. Dispersed materials obtained in the Ti-O system. Methods. Plasma dynamic synthesis, X-ray diffractometry (X-ray phase analysis), scanning electron microscopy, transmission electron microscopy. Results. Using a high-speed jet of electric discharge plasma generated by a coaxial magneto- plasma accelerator, experimental studies were performed on the synthesis of non-stoichiometric titanium oxides in a carbon dioxide environment. The composition and microstructure of the obtained dispersed products were studied. It was revealed that the materials contain Magn & eacute;li phases TinO2n-1, as well as traditional stoichiometric rutile and anatase. From the point of view of the efficiency of obtaining Magn & eacute;li phases, the single-pulse mode of operation is more attractive (content over 50%), while the efficiency of CO(2 )conversion is higher in the multi-pulse mode (up to 10% of CO2 is converted into CO). A distinctive feature of the synthesized materials at both the micro- and nanolevels is the tendency to form particles with a high degree of sphericity. The nanofraction of the products mainly consists of rounded particles with sizes up to hundreds of nanometers, of which the Magn & eacute;li phases primarily include nanoparticles with a characteristic highly defective crystalline structure with dislocation shifts.
引用
收藏
页码:185 / 196
页数:12
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