|
|
|
Публикации в базе данных Math-Net.Ru |
Цитирования |
|
2024 |
| 1. |
S. V. Kurmaz, I. V. Ulyanov, N. S. Emelyanova, V. A. Kurmaz, A. V. Kozlov, L. R. Sizov, A. Yu. Rybkin, “Nanosized systems of aluminum phthalocyanine and amphiphilic copolymers of N-vinylpyrrolidone with mono- and dimethacrylates for photodynamic therapy and fluorescence diagnostics”, Mendeleev Commun., 34:4 (2024), 492–495 |
4
|
|
2023 |
| 2. |
S. V. Kurmaz, I. I. Ivanova, N. S. Emelyanova, D. V. Konev, V. A. Kurmaz, N. V. Filatova, A. A. Balakina, A. A. Terentiev, “Doxorubicin compositions with biocompatible terpolymer of N-vinylpyrrolidone, methacrylic acid and triethylene glycol dimethacrylate”, Mendeleev Commun., 33:2 (2023), 255–258 |
4
|
|
2022 |
| 3. |
S. V. Kurmaz, N. V. Fadeeva, J. A. Skripets, R. I. Komendant, V. M. Ignatiev, N. S. Emelyanova, J. V. Soldatova, I. I. Faingold, D. A. Poletaeva, R. A. Kotelnikova, “New water-soluble forms of α-tocopherol: preparation and study of antioxidant activity in vitro”, Mendeleev Commun., 32:1 (2022), 117–119 |
9
|
|
2020 |
| 4. |
N. V. Fadeeva, E. I. Knerelman, G. I. Davydova, N. S. Emelyanova, S. V. Kurmaz, “Mesoporous polymer network produced from N-vinylpyrrolidone and triethylene glycol dimethacrylate as potential macromolecularly imprinted material and oligopeptide carrier”, Mendeleev Commun., 30:6 (2020), 738–740 |
4
|
| 5. |
S. V. Kurmaz, N. V. Fadeeva, B. S. Fedorov, G. I. Kozub, N. S. Emelyanova, V. A. Kurmaz, R. A. Manzhos, A. A. Balakina, A. A. Terentyev, “New antitumor hybrid materials based on Pt<sup>IV</sup> organic complex and polymer nanoparticles consisting of N-vinylpyrrolidone and (di)methacrylates”, Mendeleev Commun., 30:1 (2020), 22–24 |
20
|
|
2018 |
| 6. |
S. V. Kurmaz, T. N. Rudneva, N. A. Sanina, “New nitric oxide-carrier systems based on an amphiphilic copolymer of N-vinylpyrrolidone with triethylene glycol dimethacrylate”, Mendeleev Commun., 28:1 (2018), 73–75 |
14
|
|
2015 |
| 7. |
S. V. Kurmaz, N. A. Obraztsova, “New hybrid nanostructures of C<sub>60</sub> fullerene based on an amphiphilic copolymer of N-vinylpyrrolidone and (di)methacrylates”, Mendeleev Commun., 25:5 (2015), 350–352 |
11
|
|
2014 |
| 8. |
S. V. Kurmaz, G. A. Grubenko, E. I. Knerelman, G. I. Davydova, V. I. Torbov, N. N. Dremova, “Promising macromolecular nanoobjects for the template synthesis of network copolymers with mesoporous structures”, Mendeleev Commun., 24:2 (2014), 125–127 |
14
|
|
2010 |
| 9. |
S. V. Kurmaz, A. N. Pyryaev, “Branched poly-N-vinyl-2-pyrrolidones as polymeric nanocontainers for hydrophilic dyes”, Mendeleev Commun., 20:1 (2010), 52–54 |
7
|
|
2004 |
| 10. |
S. V. Kurmaz, E. O. Perepelitsina, M. L. Bubnova, G. A. Estrina, “High-efficiency approach to control network structure formation in the cross-linking radical copolymerization of ethylene glycol dimethacrylate”, Mendeleev Commun., 14:3 (2004), 125–128 |
8
|
| 11. |
В. П. Рощупкин, С. В. Курмаз, “Современное состояние исследований трехмерной радикальной сополимеризации”, Усп. хим., 73:3 (2004), 247–274 ; V. P. Roshchupkin, S. V. Kurmaz, “State-of-the-art in the studies of three-dimensional radical copolymerisation”, Russian Chem. Reviews, 73:3 (2004), 225–249 |
23
|
|
2002 |
| 12. |
S. V. Kurmaz, E. O. Perepelitsina, M. L. Bubnova, G. A. Estrina, V. P. Roshchupkin, “A cobalt(II)—porphyrin complex as a regulator of cross-linking radical copolymerization”, Mendeleev Commun., 12:1 (2002), 21–23 |
7
|
|