|
|
Most published authors (scientific articles only) of the journal
|
| 1. |
R. Kh. Rakhimov |
97 |
| 2. |
V. P. Yermakov |
30 |
| 3. |
R. A. Muminov |
27 |
| 4. |
V. G. Zavodinskу |
16 |
| 5. |
S. A. Radzhapov |
15 |
| 6. |
E. Z. Imamov |
14 |
| 7. |
R. M. Saidov |
13 |
| 8. |
V. G. Nikonov |
12 |
| 9. |
A. M. Popov |
12 |
| 10. |
B. S. Radzhapov |
12 |
| 11. |
M. R. Rakhimov |
12 |
| 12. |
O. A. Gorkusha |
10 |
| 13. |
A. A. Abdurakhmanov |
9 |
| 14. |
A. U. Makhsudov |
9 |
| 15. |
R. S. Saveliev |
9 |
| 16. |
J. Z. Akhadov |
8 |
| 17. |
T. A. Djalalov |
8 |
| 18. |
M. A. Zufarov |
8 |
| 19. |
D. I. Smagin |
8 |
| 20. |
N. V. Grineva |
7 |
| 21. |
D. R. Komilova |
7 |
| 22. |
M. Kusch |
7 |
| 23. |
A. A. Satin |
7 |
| 24. |
K. I. Starostin |
7 |
|
40 most published authors of the journal |
|
| Most cited authors of the journal |
| 1. |
R. Kh. Rakhimov |
215 |
| 2. |
V. P. Yermakov |
71 |
| 3. |
S. A. Radzhapov |
36 |
| 4. |
È. M. Koltsova |
26 |
| 5. |
A. M. Vasetsky |
25 |
| 6. |
E. S. Kurkina |
25 |
| 7. |
M. V. Dolgopolov |
23 |
| 8. |
R. A. Muminov |
22 |
| 9. |
M. R. Rakhimov |
21 |
| 10. |
E. Z. Imamov |
19 |
| 11. |
R. M. Saidov |
17 |
| 12. |
B. S. Radzhapov |
15 |
| 13. |
R. S. Saveliev |
15 |
| 14. |
D. I. Smagin |
15 |
| 15. |
V. I. Chepurnov |
14 |
| 16. |
A. A. Satin |
13 |
| 17. |
K. I. Starostin |
13 |
| 18. |
M. A. Zufarov |
12 |
| 19. |
D. N. Mukhtorov |
12 |
| 20. |
A. V. Gurskaya |
11 |
| 21. |
S. V. Ponomarenko |
11 |
| 22. |
Ya. E. Prokushev |
11 |
| 23. |
G. V. Puzyrnaya |
11 |
|
40 most cited authors of the journal |
|
| Most cited articles of the journal |
| 1. |
Mathematical modeling of the spread of COVID-19 in Moscow È. M. Koltsova, E. S. Kurkina, A. M. Vasetsky Comp. nanotechnol., 2020, 7:1, 99–105 |
25 |
| 2. |
A possible mechanism of the optical quantum tunneling effect in photocatalysts based on nanostructured functional ceramics R. Kh. Rakhimov Comp. nanotechnol., 2023, 10:3, 26–34 |
14 |
| 3. |
Prospects of solar energy: the role of modern solar technologies in the production of hydrogen R. Kh. Rakhimov, V. P. Yermakov Comp. nanotechnol., 2023, 10:3, 11–25 |
13 |
| 4. |
A big solar oven R. Kh. Rakhimov Comp. nanotechnol., 2019, 6:2, 141–150 |
13 |
| 5. |
Pulse tunnel effect: fundamentals and prospects for application R. Kh. Rakhimov Comp. nanotechnol., 2024, 11:1, 193–213 |
11 |
| 6. |
Efficiency determination problems for SiC*/Si microstructures and contact formation V. I. Chepurnov, S. A. Radzhapov, M. V. Dolgopolov, G. V. Puzyrnaya, A. V. Gurskaya Comp. nanotechnol., 2021, 8:3, 59–68 |
11 |
| 7. |
Features of synthesis of functional ceramics with a complex of the set properties by a radiation method. Part 5. Mechanism of generation of impulses functional ceramics R. Kh. Rakhimov, M. S. Saidov, V. P. Yermakov Comp. nanotechnol., 2016:2, 81–93 |
8 |
| 8. |
Scaling models of electrical properties of photo- and beta-converters with nano-heterojunctions M. V. Dolgopolov, M. V. Elisov, S. A. Radzhapov, A. S. Chipura Comp. nanotechnol., 2023, 10:1, 138–146 |
7 |
| 9. |
Development of the equipment with use of the functional ceramics synthesized on the Big Solar Furnace R. Kh. Rakhimov Comp. nanotechnol., 2015:3, 11–25 |
7 |
| 10. |
New approaches to the synthesis of functional materials with specified properties under the influence of concentrated radiation and pulse tunnel effect R. Kh. Rakhimov, V. P. Yermakov Comp. nanotechnol., 2024, 11:1, 214–223 |
6 |
| 11. |
Productive methods for increasing the efficiency of intermediate reactions in the synthesis of functional ceramics R. Kh. Rakhimov, V. V. Pan'kov, V. P. Yermakov, L. V. Makhnach Comp. nanotechnol., 2024, 11:1, 224–234 |
6 |
| 12. |
Capabilities of polyethylene-ceramic composite in comparison with polyethylene film in real operation conditions R. Kh. Rakhimov, V. P. Yermakov, M. R. Rakhimov, D. N. Mukhtorov Comp. nanotechnol., 2022, 9:2, 67–72 |
6 |
| 13. |
The modeling of information security system design processes in state information systems Ya. E. Prokushev, S. V. Ponomarenko, S. A. Ponomarenko Comp. nanotechnol., 2021, 8:1, 26–37 |
6 |
| 14. |
Silicon-lithium $\Delta E$-detectors of alpha-radiation to the radiometer S. A. Radzhapov, R. Kh. Rakhimov, B. S. Radzhapov, M. A. Zufarov Comp. nanotechnol., 2019, 6:2, 157–159 |
6 |
| 15. |
Features of synthesis of functional ceramics with a complex of the set properties by a radiation method. Part 1 R. Kh. Rakhimov Comp. nanotechnol., 2016:2, 9–27 |
6 |
| 16. |
Interrelation and interpretation of effects in quantum mechanics and classical physics R. Kh. Rakhimov Comp. nanotechnol., 2024, 11:3, 98–124 |
5 |
| 17. |
Fractals in quantum mechanics: from theory to practical applications R. Kh. Rakhimov Comp. nanotechnol., 2024, 11:3, 125–160 |
5 |
| 18. |
Using a tensor model to handle uncertainty in complex dynamical systems A. V. Volosova Comp. nanotechnol., 2023, 10:1, 79–87 |
5 |
| 19. |
The modeling of processes of design of information protection systems in critical information infrastructures Ya. E. Prokushev, S. V. Ponomarenko, N. V. Shishov Comp. nanotechnol., 2022, 9:2, 45–55 |
5 |
| 20. |
Analysis of the efficiency of a solar cell with nano-dimensional hetero transitions E. Z. Imamov, R. A. Muminov, R. Kh. Rakhimov Comp. nanotechnol., 2021, 8:4, 42–50 |
5 |
| 21. |
A new method for drying and calcining welding electrodes using emitters made of functional ceramic R. M. Saidov, R. Kh. Rakhimov, B. D. Yusupov, M. K. Kholdorov Comp. nanotechnol., 2020, 7:1, 44–51 |
5 |
| 22. |
Prospects of application of polymer-ceramic composite in the production of microalgae R. Kh. Rakhimov, J. Peter, V. P. Yermakov, M. R. Rakhimov Comp. nanotechnol., 2019, 6:4, 44–48 |
5 |
| 23. |
Analysis of competing variants of air conditioning systems without air extraction from engines at the stage of passenger aircraft onboard systems conceptual design D. I. Smagin, K. I. Starostin, R. S. Saveliev, A. A. Satin, A. R. Neveshkina, D. S. Suzdaltseva Comp. nanotechnol., 2019, 6:3, 86–91 |
5 |
| 24. |
Modeling of failures of the electricity system (SES) ac long-haul passenger plane in the software package SimInTech D. I. Smagin, K. I. Starostin, R. S. Saveliev, A. A. Satin, A. A. Pritulkin, T. D. Makovskaya Comp. nanotechnol., 2019, 6:2, 63–70 |
5 |
|
| Most requested articles of the journal |
|
|
| 1. |
Unique opportunity to create cheap but effective silicon solar cells E. Z. Imamov, T. A. Djalalov, R. A. Muminov, R. Kh. Rakhimov Comp. nanotechnol., 2017:1, 56–60 | 19 |
| 2. |
Computer simulation of oscillatory processes created by a planetary vibroprive with kinematically unbalanced masses in machines for mixing liquid mixtures V. G. Nekrutov, R. G. Zakirov, P. S. Maltsev Comp. nanotechnol., 2021, 8:4, 34–41 | 15 |
| 3. |
On the comparative efficiency of change point detection in multivariate technological processes using multidimensional double control charts A. N. Chesalin, S. Ya. Grodzensky, N. N. Ushkova, K. V. Bolotin, A. V. Stavtsev Comp. nanotechnol., 2023, 10:1, 67–78 | 15 |
| 4. |
Features of the development of manufacturing technology for surface-barrier detectors of large diameter with a large working area sensitive for measuring the activity of natural isotopes S. A. Radzhapov, B. S. Radzhapov, R. Kh. Rakhimov Comp. nanotechnol., 2018:1, 151–154 | 15 |
| 5. |
Investigation of the influence of pulsed radiation generated by functional ceramics based on the principle of PTE on the characteristics of the Cr$_{2}$O$_{3}$-SiO$_{2}$-Fe$_{2}$O$_{3}$-CaO-Al$_{2}$O$_{3}$-MgO-CuO system R. Kh. Rakhimov, V. V. Pan'kov, T. S. Saidvaliev Comp. nanotechnol., 2024, 11:2, 145–156 | 14 |
| 6. |
Assessment of the possibilities of using behavioral biometrics: analysis of computer mouse movements to protect remote administration sessions A. G. Uymin, A. V. Belousov Comp. nanotechnol., 2025, 12:3, 170–177 | 13 |
| 7. |
Algorithm for detection of head tremor according to data of a smartphone video camera of a biomedical monitoring system A. A. Egorchev, D. E. Chikrin, D. M. Pashin, A. F. Fakhrutdinov Comp. nanotechnol., 2024, 11:4, 87–93 | 13 |
| 8. |
Study of influence of physical and mechanical properties of chemical compounds to spray from the dispenser during inert gases welding I. G. Atabaev, D. R. Komilova, F. M. Rakhimova, Z. S. Mukhitdinov, R. M. Saidov, J. Z. Akhadov, H. Yong, M. Kusch Comp. nanotechnol., 2017:1, 65–70 | 13 |
| 9. |
Development of a method for obtaining ceramic nanocomposites using sol-gel technology elements to create inclusions of amorphous phases with a composition similar to the target crystalline ceramic matrix R. Kh. Rakhimov, V. V. Pan'kov, V. P. Yermakov, Yu. S. Haiduk, M. R. Rakhimov, D. N. Mukhtorov Comp. nanotechnol., 2022, 9:3, 60–67 | 13 |
| 10. |
Implementation of Simoyu method for modeling of transients of control object V. S. Artemyev, A. S. Maksimov Comp. nanotechnol., 2024, 11:3, 43–51 | 13 |
|
| Total publications: |
591 |
| Scientific articles: |
574 |
| Authors: |
782 |
| Citations: |
447 |
| Cited articles: |
182 |
|