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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
O. I. Gyrdasova, R. F. Samigullina, E. V. Vladimirova, I. S. Medyankina, L. Yu. Buldakova, M. Yu. Yanchenko, L. A. Pasechnik, “Precursor method for the synthesis of highly dispersed ZrO<sub>2</sub> doped with scandium”, Mendeleev Commun., 34:5 (2024), 640–642 |
2. |
Tatyana I. Chupakhina, Olga I. Gyrdasova, Anastasya M. Uporova, Larisa Yu. Buldakova, Mikhail Yu. Yanchenko, Dzhavid V. Mamedov, Yulia A. Deeva, Inna V. Baklanova, “Study of photocatalytic activity in two light ranges of Sr2Mn0.4Ti0.6O4 oxide with the K2NiF4-type structure”, Nanosystems: Physics, Chemistry, Mathematics, 15:4 (2024), 540–547 |
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2023 |
3. |
O. I. Gyrdasova, E. V. Vladimirova, L. Yu. Buldakova, M. Yu. Yanchenko, A. V. Dmitriev, “Effect of synthesis conditions on morphology, crystal structure and electrochemical properties of β-NaV<sub>6</sub>O<sub>15</sub>”, Mendeleev Commun., 33:3 (2023), 368–371 |
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2020 |
4. |
E. V. Vladimirova, O. I. Gyrdasova, A. V. Dmitriev, “Synthesis of nanostructured hollow microspheres of vanadium (III, V) oxides”, Nanosystems: Physics, Chemistry, Mathematics, 11:5 (2020), 572–577 |
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2019 |
5. |
T. I. Chupakhina, Yu. A. Deeva, N. V. Melnikova, V. V. Gorin, I. S. Sivkov, O. I. Gyrdasova, “Synthesis, structure and dielectric properties of new oxide compounds Ln<sub>1−<i>x</i></sub>Sr<sub>1+<i>x</i></sub>Cu<sub><i>x</i>/2</sub>Ti<sub>1−<i>x</i>/2</sub>O<sub>4</sub> (Ln=La, Pr, Nd) belonging to the structural type of K<sub>2</sub>NiF<sub>4</sub>”, Mendeleev Commun., 29:3 (2019), 349–351 |
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2018 |
6. |
M. A. Melkozerova, O. I. Gyrdasova, I. V. Baklanova, E. V. Vladimirova, E. V. Zabolotskaya, V. N. Krasil'nikov, “The effect of preparation method on the defect structure and luminescence properties of γ-Al<sub>2</sub>O<sub>3</sub>”, Mendeleev Commun., 28:6 (2018), 668–670 |
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2017 |
7. |
M. A. Melkozerova, O. I. Gyrdasova, T. V. D'yachkova, A. P. Tyutyunnik, V. V. Bannikov, E. V. Zabolotskaya, V. V. Marchenkov, Yu. A. Perevozchikova, F. Sauerzopf, V. N. Krasil'nikov, “Peculiarities of EPR in polycrystalline solid solutions Zn0.95Fe0.05O with different particles morphology: The role of intrinsic defects in formation of magnetic properties”, Fizika Tverdogo Tela, 59:8 (2017), 1484–1489 ; Phys. Solid State, 59:8 (2017), 1506–1511 |
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8. |
V. N. Krasil'nikov, T. V. Dyachkova, A. P. Tyutyunnik, O. I. Gyrdasova, Yu. A. Perevozchikova, V. V. Marchenkov, H. W. Weber, “Precursor synthesis and magnetic properties of Cd<sub>1−<i>x</i></sub>Fe<sub><i>x</i></sub>O (0 ⩽ <i>x</i> ⩽ 0.07)”, Mendeleev Commun., 27:5 (2017), 456–458 |
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9. |
O. I. Gyrdasova, M. A. Melkozerova, I. V. Baklanova, L. Yu. Buldakova, N. S. Sycheva, V. N. Krasil'nikov, M. Yu. Yanchenko, “Synthesis, structure, optical and photocatalytic properties of copper-activated ZnO”, Mendeleev Commun., 27:4 (2017), 410–412 |
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10. |
N. S. Kozhevnikova, A. S. Vorokh, O. I. Gyrdasova, I. V. Baklanova, A. N. Titov, M. V. Kuznetsov, “Synthetic pathway of a Cu2ZnSnS4 powder using low temperature annealing of nanostructured binary sulfides”, Nanosystems: Physics, Chemistry, Mathematics, 8:6 (2017), 787–792 |
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2016 |
11. |
I. V. Baklanova, V. N. Krasil'nikov, O. I. Gyrdasova, L. Yu. Buldakova, “Synthesis and optical and photocatalytic properties of manganese-doped titanium oxide with a three-dimensional architecture of particles”, Mendeleev Commun., 26:4 (2016), 335–337 |
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2015 |
12. |
V. N. Krasil'nikov, I. V. Baklanova, O. I. Gyrdasova, “Synthesis and luminescent properties of Al<sub>1–<i>x</i></sub> Tb<sub><i>x</i></sub>(HCOO)<sub>3</sub> and Al<sub>2–2<i>x</i></sub> Tb<sub>2<i>x</i></sub>O<sub>3</sub>”, Mendeleev Commun., 25:3 (2015), 209–210 |
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2014 |
13. |
O. I. Gyrdasova, V. N. Krasil'nikov, E. V. Shalaeva, I. V. Baklanova, M. A. Melkozerova, L. Yu. Buldakova, M. Yu. Yanchenko, “Optical and photocatalytic properties of quasi-one-dimensional ZnO activated by carbon”, Mendeleev Commun., 24:3 (2014), 143–144 |
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14. |
N. S. Kozhevnikova, O. I. Gyrdasova, A. S. Vorokh, I. V. Baklanova, L. Yu. Buldakova, “A facile route of coupling of ZnO nanorods by CdS nanoparticles using chemical bath deposition”, Nanosystems: Physics, Chemistry, Mathematics, 5:4 (2014), 579–589 |
15. |
T. V. D'yachkova, V. N. Krasil'nikov, O. I. Gyrdasova, E. V. Shalaeva, A. P. Tyutyunnik, V. V. Marchenkov, Yu. G. Zainulin, H. W. Weber, “Effect of high pressures and high temperatures on structural and magnetic characteristics of nanostructured solid solutions Zn1−xFexO”, Nanosystems: Physics, Chemistry, Mathematics, 5:4 (2014), 564–573 |
16. |
E. V. Polyakov, V. N. Krasil'nikov, O. I. Gyrdasova, L. Yu. Buldakova, M. Yu. Yanchenko, “Synthesis and photocatalytic activity of quasi-one-dimensional (1-D) solid solutions Ti1−xMxO2−2x/2 (M(III)= Fe(III), Ce(III), Er(III), Tb(III), Eu(III), Nd(III) and Sm(III), 0⩽)”, Nanosystems: Physics, Chemistry, Mathematics, 5:4 (2014), 553–563 |
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