|
|
Most published authors (scientific articles only) of the journal
|
| 1. |
I. P. Beletskaya |
32 |
| 2. |
N. S. Zefirov |
30 |
| 3. |
O. N. Chupakhin |
28 |
| 4. |
A. L. Rusanov |
26 |
| 5. |
M. G. Voronkov |
25 |
| 6. |
A. L. Buchachenko |
24 |
| 7. |
V. V. Korshak |
23 |
| 8. |
B. A. Trofimov |
23 |
| 9. |
G. A. Tolstikov |
22 |
| 10. |
V. N. Charushin |
20 |
| 11. |
M. I. Kabachnik |
19 |
| 12. |
V. I. Minkin |
19 |
| 13. |
G. E. Zaikov |
19 |
| 14. |
E. T. Denisov |
17 |
| 15. |
U. M. Dzhemilev |
17 |
| 16. |
A. L. Ivanovskii |
17 |
| 17. |
S. V. Vinogradova |
16 |
| 18. |
A. D. Garnovskii |
16 |
| 19. |
V. G. Nenajdenko |
16 |
| 20. |
N. M. Emanuel' |
15 |
| 21. |
V. G. Berezkin |
15 |
|
40 most published authors of the journal |
|
| Most cited authors of the journal |
| 1. |
R. G. Pearson |
10711 |
| 2. |
B. A. Trofimov |
1372 |
| 3. |
I. P. Beletskaya |
1266 |
| 4. |
G. V. Lisichkin |
1173 |
| 5. |
A. B. Yaroslavtsev |
1140 |
| 6. |
S. P. Gubin |
1068 |
| 7. |
V. G. Nenajdenko |
1051 |
| 8. |
O. N. Chupakhin |
1030 |
| 9. |
V. P. Ananikov |
990 |
| 10. |
Yu. A. Koksharov |
972 |
| 11. |
G. B. Khomutov |
972 |
| 12. |
G. Yu. Yurkov |
972 |
| 13. |
N. S. Zefirov |
965 |
| 14. |
V. V. Boldyrev |
955 |
| 15. |
A. L. Ivanovskii |
943 |
| 16. |
V. I. Minkin |
940 |
| 17. |
J. Songstad |
844 |
| 18. |
V. N. Charushin |
843 |
| 19. |
A. D. Garnovskii |
820 |
| 20. |
C. J. Pedersen |
808 |
| 21. |
H. K. Frensdorff |
808 |
|
40 most cited authors of the journal |
|
| Most cited articles of the journal |
| 1. |
Hard and Soft Acids and Bases R. G. Pearson Usp. Khim., 1971, 40:7, 1259–1282 |
9217 |
| 2. |
Magnetic nanoparticles: preparation, structure and properties S. P. Gubin, Yu. A. Koksharov, G. B. Khomutov, G. Yu. Yurkov Usp. Khim., 2005, 74:6, 539–574 |
972 |
| 3. |
Application of the Principle of Hard and Soft Acids and Bases to Organic Chemistry R. G. Pearson, J. Songstad Usp. Khim., 1969, 38:7, 1223–1243 |
844 |
| 4. |
Macrocyclic Polyethers and Their Complexes C. J. Pedersen, H. K. Frensdorff Usp. Khim., 1973, 42:3, 492–510 |
808 |
| 5. |
Synthesis and properties of silver nanoparticles: advances and prospects Yu. A. Krutyakov, A. A. Kudrinskiy, A. Yu. Olenin, G. V. Lisichkin Usp. Khim., 2008, 77:3, 242–269 |
696 |
| 6. |
The factors determining nucleophilic reactivities J. O. Edwards, R. G. Pearson Usp. Khim., 1963, 32:2, 248–262 |
650 |
| 7. |
Mechanochemistry and mechanical activation of solids V. V. Boldyrev Usp. Khim., 2006, 75:3, 203–216 |
571 |
| 8. |
Polypyrrole: a conducting polymer; its synthesis, properties and applications T. V. Vernitskaya, O. N. Efimov Usp. Khim., 1997, 66:5, 489–505 |
571 |
| 9. |
The effects of solvation on the properties of anions in dipolar aprotic solvents A. J. Parker Usp. Khim., 1963, 32:10, 1270–1295 |
564 |
| 10. |
Metal-organic frameworks: structure, properties, methods of synthesis and characterization V. V. Butova, M. A. Soldatov, A. A. Guda, K. A. Lomachenko, C. Lamberti Usp. Khim., 2016, 85:3, 280–307 |
493 |
| 11. |
Cryogels on the basis of natural and synthetic polymers: preparation, properties and application V. I. Lozinsky Usp. Khim., 2002, 71:6, 559–585 |
481 |
| 12. |
αβ-Unsaturated ethers and their analogues in reactions of diene synthesis L. S. Povarov Usp. Khim., 1967, 36:9, 1533–1562 |
461 |
| 13. |
Detonation synthesis ultradispersed diamonds: properties and applications V. Yu. Dolmatov Usp. Khim., 2001, 70:7, 687–708 |
437 |
| 14. |
Kinetik und Mechanismus 1.3-Dipolarer Cycloadditionen R. Huisgen Usp. Khim., 1966, 35:1, 150–172 |
406 |
| 15. |
Physicochemical Foundations of Micellar Catalysis I. V. Berezin, K. Martinek, A. K. Yatsimirskii Usp. Khim., 1973, 42:10, 1729–1756 |
402 |
| 16. |
Allyl-Transition Metal Systems G. Wilke, B. Bogdanović, P. Hardt, P. Heimbach, W. Keim, M. Kröner, W. Oberkirch, K. Tanaka, E. Steinrücke, D. Walter, H. Zimmermann Usp. Khim., 1968, 37:6, 1056–1083 |
398 |
| 17. |
Studies on the Fischer indole synthesis B. J. Robinson Usp. Khim., 1971, 40:8, 1434–1478 |
371 |
| 18. |
Hydrophobic materials and coatings: principles of design, properties and applications L. B. Boinovich, A. M. Emelyanenko Usp. Khim., 2008, 77:7, 619–638 |
368 |
| 19. |
Inhibition of the autoxidation of organic substances in the liquid phase K. Ingold Usp. Khim., 1964, 33:9, 1107–1151 |
339 |
| 20. |
The Faraday effect P. N. Schatz, A. J. McCaffery Usp. Khim., 1971, 40:9, 1698–1725 |
322 |
|
40 most cited articles of the journal |
|
| Most requested articles of the journal |
|
|
| 1. |
Nuclear Magnetic Resonance Study of Ion-exchange Resin–Solvent Systems G. S. Bystrov, G. A. Grigor'eva, N. I. Nikolaev Usp. Khim., 1976, 45:9, 1621–1645 | 2 |
| 2. |
Химия окислов азота и механизмы их реакций с олефинами H. Shechter Usp. Khim., 1966, 35:10, 1722–1739 | 2 |
| 3. |
Topological structure and relaxation properties of polymers V. I. Irzhak Usp. Khim., 2005, 74:10, 1025–1056 | 2 |
| 4. |
NMR screening and studies of target–ligand interactions V. I. Polshakov, E. A. Batuev, A. B. Mantsyzov Usp. Khim., 2019, 88:1, 59–98 | 2 |
| 5. |
Advances in the Thin-layer Chromatography of Inorganic Ions M. P. Volynets, A. N. Ermakov Usp. Khim., 1970, 39:5, 934–959 | 2 |
| 6. |
Electromigration in liquid metals D. K. Belashchenko Usp. Khim., 1965, 34:3, 530–564 | 2 |
| 7. |
Zur Evolution und Biosynthese der terpenoiden Pheromone und Hormone H. Z. Levinson Usp. Khim., 1974, 43:1, 181–195 | 2 |
| 8. |
Electron Transfer as an Elementary Act of Organic Reactions K. A. Bilevich, O. Yu. Okhlobystin Usp. Khim., 1968, 37:12, 2162–2191 | 2 |
| 9. |
Chemical Separation of Uranium Isotopes B. N. Laskorin, A. M. Babenko, E. A. Filippov, A. F. Trubnikov Usp. Khim., 1975, 44:5, 761–781 | 2 |
| 10. |
Aerosol synthesis and applications of single-walled carbon nanotubes A. G. Nasibulin, S. D. Shandakov, M. Yu. Timmermans, E. I. Kauppinen Usp. Khim., 2011, 80:8, 805–820 | 2 |
|
| Total publications: |
4345 |
| Scientific articles: |
4264 |
| Authors: |
6048 |
| Citations: |
114497 |
| Cited articles: |
4114 |
 |
Impact Factor Web of Science |
|
for 2025:
7.100 |
|
for 2024:
6.000 |
|
for 2023:
7.000 |
|
for 2022:
7.700 |
|
for 2021:
7.460 |
|
for 2020:
6.926 |
|
for 2019:
4.750 |
|
for 2018:
4.612 |
|
for 2017:
3.991 |
|
for 2016:
4.058 |
|
for 2015:
3.687 |
|
for 2014:
2.318 |
|
for 2013:
2.583 |
|
for 2012:
2.299 |
|
for 2011:
2.644 |
|
for 2010:
2.346 |
|
for 2009:
2.073 |
 |
Scopus Metrics |
|
2025 |
CiteScore |
10.500 |
|
2025 |
SNIP |
2.085 |
|
2025 |
SJR |
0.955 |
|
2024 |
CiteScore |
12.900 |
|
2024 |
SNIP |
1.826 |
|
2024 |
SJR |
0.811 |
|
2023 |
CiteScore |
13.000 |
|
2023 |
SNIP |
2.060 |
|
2023 |
SJR |
0.890 |
|
2022 |
SJR |
1.085 |
|
2021 |
SJR |
0.962 |
|
2020 |
SJR |
0.962 |
|
2019 |
SJR |
0.896 |
|
2018 |
CiteScore |
4.330 |
|
2018 |
SJR |
0.868 |
|
2017 |
CiteScore |
3.710 |
|
2017 |
SNIP |
1.913 |
|
2017 |
SJR |
0.792 |
|
2016 |
CiteScore |
3.810 |
|
2016 |
SNIP |
2.365 |
|
2016 |
SJR |
0.924 |
|
2015 |
CiteScore |
3.250 |
|
2015 |
SNIP |
2.321 |
|
2015 |
IPP |
3.105 |
|
2015 |
SJR |
0.554 |
|
2014 |
CiteScore |
2.440 |
|
2014 |
SNIP |
1.676 |
|
2014 |
IPP |
2.516 |
|
2014 |
SJR |
0.829 |
|
2013 |
SNIP |
1.317 |
|
2013 |
IPP |
2.230 |
|
2013 |
SJR |
0.804 |
|
2012 |
SNIP |
1.127 |
|
2012 |
IPP |
2.111 |
|
2012 |
SJR |
0.599 |
|