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Russian Chemical Reviews, 2021, Volume 90, Issue 2, Pages 231–264
DOI: https://doi.org/10.1070/RCR4964
(Mi rcr4332)
 

This article is cited in 30 scientific papers (total in 30 papers)

Modern trends in controlled synthesis of functional polymers: fundamental aspects and practical applications

D. F. Grishin, I. D. Grishin

National Research Lobachevsky State University of Nizhny Novgorod
Abstract: Major trends in controlled radical polymerization (CRP) or reversible-deactivation radical polymerization (RDRP), the most efficient method of synthesis of well-defined homo- and copolymers with specified parameters and properties, are critically analyzed. Recent advances associated with the three classical versions of CRP: nitroxide mediated polymerization, reversible addition-fragmentation chain transfer polymerization and atom transfer radical polymerization, are considered. Particular attention is paid to the prospects for the application of photoinitiation and photocatalysis in CRP. This approach, which has been intensively explored recently, brings synthetic methods of polymer chemistry closer to the light-induced processes of macromolecular synthesis occurring in living organisms. Examples are given of practical application of CRP techniques to obtain industrially valuable, high-tech polymeric products.
The bibliography includes 429 references.
Keywords: Controlled Radical Polymerization, Reversible-Deactivated Radical Polymerization, Atom Transfer Radical Polymerization, Reversible Addition-Fragmentation, Nitroxide-Mediated Radical Polymerization, Degenerative Transfer, Metal-Free ATRP.
Funding agency Grant number
Russian Foundation for Basic Research 19-13-50010
Received: 24.05.2020
Bibliographic databases:
Document Type: Article
Language: English
Original paper language: Russian
Citation: D. F. Grishin, I. D. Grishin, “Modern trends in controlled synthesis of functional polymers: fundamental aspects and practical applications”, Russian Chem. Reviews, 90:2 (2021), 231–264
Citation in format AMSBIB
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\paper Modern trends in controlled synthesis of functional polymers: fundamental aspects and practical applications
\jour Russian Chem. Reviews
\yr 2021
\vol 90
\issue 2
\pages 231--264
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Linking options:
  • https://www.mathnet.ru/eng/rcr4332
  • https://doi.org/10.1070/RCR4964
  • https://www.mathnet.ru/eng/rcr/v90/i2/p231
  • This publication is cited in the following 30 articles:
    1. Ajay Singh, Anjali Chauhan, Rahul Gaur, Discov. Chem., 2:1 (2025)  crossref
    2. D. F. Grishin, M. V. Pavlovskaya, I. P. Kriulichev, E. D. Dolganov, I. D. Grishin, Russ Chem Bull, 74:1 (2025), 201  crossref
    3. Yu. S. Pronina, M. V. Pavlovskaya, M. V. Arseniev, D. F. Grishin, Plastičeskie massy, 2024, no. 11-12, 35  crossref
    4. I. D. Grishin, O. S. Gulyaeva, Yu. A. Kuznetsova, E. I. Zueva, D. F. Grishin, Polym. Sci. Ser. B, 2024  crossref
    5. O. S. Lizyakina, L. B. Vaganova, D. F. Grishin, Polym. Sci. Ser. B, 2024  crossref
    6. Philiswa Nosizo Nomngongo, Shirley Kholofelo Selahle, Anele Mpupa, Azile Nqombolo, Tshimangadzo Saddam Munonde, Lawrence Mzukisi Madikizela, TrAC Trends in Analytical Chemistry, 179 (2024), 117906  crossref
    7. I. D. Grishin, O. S. Gulyaeva, Yu. A. Kuznetsova, E. I. Zueva, D. F. Grishin, Vysokomolekulârnye soedineniâ. Seriâ C, 66:1 (2024), 74  crossref
    8. O. S. Lizyakina, L. B. Vaganova, D. F. Grishin, Vysokomolekulârnye soedineniâ. Seriâ B, Himiâ polimerov, 66:3 (2024), 159  crossref
    9. I. D. Grishin, E. I. Zueva, Yu. S. Pronina, D. F. Grishin, Catalysts, 13:2 (2023), 444  crossref
    10. V. A. Poluektova, N. I. Cherkashina, E. P. Kozhanova, D. S. Matveenko, Innovations and Technologies in Construction, Lecture Notes in Civil Engineering, 307, 2023, 134  crossref
    11. E. V. Chernikova, M. S. Pavlova, A. V. Plutalova, E. A. Litmanovich, A. L. Maksimov, Dokl Chem, 512:1 (2023), 249  crossref  crossref
    12. O. S. Lizyakina, L. B. Vaganova, D. F. Grishin, Polym. Sci. Ser. B, 65:4 (2023), 398  crossref  crossref
    13. I. V. Bezsudnov, A. G. Khmelnitskaia, A. A. Kalinina, S. A. Ponomarenko, Russian Chem. Reviews, 92:2 (2023), RCR5070  mathnet  mathnet  crossref  scopus
    14. S. G. Zlotin, K. S. Egorova, V. P. Ananikov, A. A. Akulov, M. V. Varaksin, O. N. Chupakhin, V. N. Charushin, K. P. Bryliakov, A. D. Averin, I. P. Beletskaya, E. L. Dolengovski, Yu. H. Budnikova, O. G. Sinyashin, Z. N. Gafurov, A. O. Kantyukov, D. G. Yakhvarov, A. V. Aksenov, M. N. Elinson, V. G. Nenajdenko, A. M. Chibiryaev, N. S. Nesterov, E. A. Kozlova, O. N. Mart'yanov, I. A. Balova, V. N. Sorokoumov, D. A. Guk, E. K. Beloglazkina, D. A. Lemenovskii, I. Yu. Chukicheva, L. L. Frolova, E. S. Izmest'ev, I. A. Dvornikova, A. V. Popov, A. V. Kutchin, D. M. Borisova, A. A. Kalinina, A. M. Muzafarov, I. V. Kuchurov, A. L. Maksimov, A. V. Zolotukhina, Russian Chem. Reviews, 92:12 (2023), RCR5104  mathnet  mathnet  crossref
    15. O. S. Lizyakina, L. B. Vaganova, D. F. Grishin, Polym. Sci. Ser. B, 65:3 (2023), 270  crossref  crossref
    16. D. F. Grishin, Russ. Chem. Bull., 72:6 (2023), 1285  crossref
    17. E. V. Kolyakina, M. V. Pavlovskaya, Yu. S. Pronina, S. D. Zaitsev, D. F. Grishin, Russ. J. Appl. Chem., 96:10 (2023), 889  crossref
    18. E. V. Kolyakina, F. Kh. Shoipova, D. F. Grishin, Polym. Sci. Ser. B, 64:4 (2022), 359  crossref
    19. I. D. Grishin, Polym. Sci. Ser. C, 64:2 (2022), 82  crossref
    20. D. A. Loginov, F. M. Dolgushin, V. E. Konoplev, M. V. Tachaev, Inorganics, 10:10 (2022), 158  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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