Novel microwave-assisted method of Y2Ti2O7 powder synthesis
| Author | Affiliation |
|---|---|
Chishkala, Vladimir | V. N. Karazin Kharkiv National University |
Lytovchenko, Serhiy | V. N. Karazin Kharkiv National University |
Mazilin, Bohdan | V. N. Karazin Kharkiv National University |
Gevorkyan, Edwin | Ukraine State University of Railway Transport |
Shkuropatenko, Vladimir | KIPT NAS of Ukraine |
Voyevodin, Viktor | KIPT NAS of Ukraine |
Rucki, Mirosław | Kazimierz Pulaski University of Technology and Humanities in Radom |
Siemiątkowski, Zbigniew | Kazimierz Pulaski University of Technology and Humanities in Radom |
Dudziak, Agnieszka | University of Life Sciences in Lublin |
Caban, Jacek | Lublin University of Technology |
| Year | Volume | Issue | Start Page | End Page |
|---|---|---|---|---|
2020 | 13 | 24(5621) | 1 | 11 |
| URI | Access Rights |
|---|---|
| https://hdl.handle.net/20.500.14911/151076 | |
| https://www.mdpi.com/1996-1944/13/24/5621 | Viso teksto dokumentas (atviroji prieiga) / Full Text Document (Open Access) |
| https://doi.org/10.3390/ma13245621 | Viso teksto dokumentas (atviroji prieiga) / Full Text Document (Open Access) |
In the paper, a novel technique for highly dispersed pyrochlore Y2Ti2O7 is proposed. The experimental results proved that the application of microwave irradiation at a certain stage of calcination allowed synthesizing of Y2Ti2O7 in much shorter time, which ensured substantial energy savings. An increase up to 98 wt.% in the content of the preferred phase with a pyrochlore-type structure Y2Ti2O7 was obtained after 25 h of yttrium and titanium oxides calcination at a relatively low temperature of 1150 °C, while the microwave-supported process took only 9 h and provided 99 wt.% of pyrochlore. The proposed technology is suitable for industrial applications, enabling the fabrication of large industrial amounts of pyrochlore without solvent chemistry and high-energy mills. It reduced the cost of both equipment and energy and made the process more environmentally friendly. The particle size and morphology did not change significantly; therefore, the microwave-assisted method can fully replace the traditional one.
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