Synthesis, Microstructural and Thermal analysis of inverse spinel compound Mg2TiO4 is an open-access, peer-reviewed research paper by Alok Kumar Singha , T. D. Senguttuvanb and Azher M. Siddiquia *, published in Volume 2, Issue 2 of the International Journal of Advanced Research in Science and Technology (IJARST), a UGC-approved journal (Print ISSN 2319-1783, Online ISSN 2320-1126).
Alok Kumar Singha , T. D. Senguttuvanb and Azher M. Siddiquia *
Abstract:
In the present work, the influence of mechanical activation on Mg2TiO4 has been studied. High-energy wet ball-mill and post-anneal processing were applied to synthesize Mg2TiO4 single phase crystalline material. The mixture of Mg(NO3)2.6H2O and TiO2 were mechanically activated for 10, 15, 24 and 48 hours in a planetary ball mill and sintered at 1300 ºC for 72 hours. Phase composition, morphological changes and thermal stability of the sample have been analyzed. The thermal analysis of Magnesium Ortho Titanate reveals the exothermic reaction to the abrupt change in two steps.
https://doi.org/10.62226/ijarst20130267
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Alok Kumar Singha , T. D. Senguttuvanb and Azher M. Siddiquia * — “Synthesis, Microstructural and Thermal analysis of inverse spinel compound Mg2TiO4.” International Journal of Advanced Research in Science and Technology (IJARST), Volume 2, Issue 2. DOI: https://doi.org/10.62226/ijarst20130267.
Alok Kumar Singha , T. D. Senguttuvanb and Azher M. Siddiquia * | Synthesis, Microstructural and Thermal analysis of inverse spinel compound Mg2TiO4 | DOI : https://doi.org/10.62226/ijarst20130267
| Journal Frequency: | ISSN 2320-1126, Monthly | |
| Paper Submission: | Throughout the month | |
| Acceptance Notification: | Within 6 days | |
| Subject Areas: | Engineering, Science & Technology | |
| Publishing Model: | Open Access | |
| Publication Fee: | USD 60 USD 50 | |
| Publication Impact Factor: | 6.76 | |
| Certificate Delivery: | Digital |