Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate
Within the framework of this work, the influence of the type of precursor and precipitator on the structure of magnesium carbonate is studied. Nanoparticles are obtained by chemical precipitation in an aqueous medium. Magnesium acetate, magnesium nitrate, and magnesium chloride are used as the precu...
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2025
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ir-123456789-304032025-05-06T09:42:06Z Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate Blinov, A. V. Блинов, А. В. Senkova, A. O. Сенкова, А. О. Gvozdenko, A. A. Гвозденко, А. А. Rekhman, Z. A. Рехман, З. А. Yasnaya, M. A. Ясная, М. А. Askerova, A. S. Аскерова, А. С. Ammonium bicarbonate X ray diffraction analysis Carbonation Ammonium carbonate Aqueous media Chemical precipitation Diffraction analysis Magnesium acetates Magnesium nitrate Nano scale Magnesium carbonate Magnesium chlorides X- ray diffractions Within the framework of this work, the influence of the type of precursor and precipitator on the structure of magnesium carbonate is studied. Nanoparticles are obtained by chemical precipitation in an aqueous medium. Magnesium acetate, magnesium nitrate, and magnesium chloride are used as the precursors of magnesium, and potassium carbonate, ammonium carbonate, and sodium carbonate are used as the precipitators. The obtained samples are examined by X-ray diffraction analysis, scanning electron microscopy, and infrared (IR) spectroscopy. It is established that magnesium acetate and ammonium carbonate are optimal precursors and precipitators for the production of magnesium carbonate nanoparticles, respectively, since the particles in this sample have a diameter from 40 to 100 nm. As a result of X-ray diffraction analysis, it is found that three phases of substances are present in the resulting sample: anhydrous magnesium carbonate, Mg2(CO3)(OH)2•3H2O, and magnesium oxide. 2025-05-06T09:39:41Z 2025-05-06T09:39:41Z 2024 Статья Blinov A.V., Senkova A.O., Gvozdenko A.A., Rekhman Z.A., Yasnaya M.A., Askerova A.S. Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate // Nanobiotechnology Reports. - 2024. - 19 (Suppl 1). - pp. S146 - S151. - DOI: 10.1134/S2635167624601372 https://dspace.ncfu.ru/handle/123456789/30403 en Nanobiotechnology Reports application/pdf application/pdf Pleiades Publishing |
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| topic |
Ammonium bicarbonate X ray diffraction analysis Carbonation Ammonium carbonate Aqueous media Chemical precipitation Diffraction analysis Magnesium acetates Magnesium nitrate Nano scale Magnesium carbonate Magnesium chlorides X- ray diffractions |
| spellingShingle |
Ammonium bicarbonate X ray diffraction analysis Carbonation Ammonium carbonate Aqueous media Chemical precipitation Diffraction analysis Magnesium acetates Magnesium nitrate Nano scale Magnesium carbonate Magnesium chlorides X- ray diffractions Blinov, A. V. Блинов, А. В. Senkova, A. O. Сенкова, А. О. Gvozdenko, A. A. Гвозденко, А. А. Rekhman, Z. A. Рехман, З. А. Yasnaya, M. A. Ясная, М. А. Askerova, A. S. Аскерова, А. С. Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate |
| description |
Within the framework of this work, the influence of the type of precursor and precipitator on the structure of magnesium carbonate is studied. Nanoparticles are obtained by chemical precipitation in an aqueous medium. Magnesium acetate, magnesium nitrate, and magnesium chloride are used as the precursors of magnesium, and potassium carbonate, ammonium carbonate, and sodium carbonate are used as the precipitators. The obtained samples are examined by X-ray diffraction analysis, scanning electron microscopy, and infrared (IR) spectroscopy. It is established that magnesium acetate and ammonium carbonate are optimal precursors and precipitators for the production of magnesium carbonate nanoparticles, respectively, since the particles in this sample have a diameter from 40 to 100 nm. As a result of X-ray diffraction analysis, it is found that three phases of substances are present in the resulting sample: anhydrous magnesium carbonate, Mg2(CO3)(OH)2•3H2O, and magnesium oxide. |
| format |
Статья |
| author |
Blinov, A. V. Блинов, А. В. Senkova, A. O. Сенкова, А. О. Gvozdenko, A. A. Гвозденко, А. А. Rekhman, Z. A. Рехман, З. А. Yasnaya, M. A. Ясная, М. А. Askerova, A. S. Аскерова, А. С. |
| author_facet |
Blinov, A. V. Блинов, А. В. Senkova, A. O. Сенкова, А. О. Gvozdenko, A. A. Гвозденко, А. А. Rekhman, Z. A. Рехман, З. А. Yasnaya, M. A. Ясная, М. А. Askerova, A. S. Аскерова, А. С. |
| author_sort |
Blinov, A. V. |
| title |
Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate |
| title_short |
Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate |
| title_full |
Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate |
| title_fullStr |
Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate |
| title_full_unstemmed |
Investigation of the Effect of the Type of Precursor and Precipitator on the Structure of Nanoscale Magnesium Carbonate |
| title_sort |
investigation of the effect of the type of precursor and precipitator on the structure of nanoscale magnesium carbonate |
| publisher |
Pleiades Publishing |
| publishDate |
2025 |
| url |
https://dspace.ncfu.ru/handle/123456789/30403 |
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