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Mendeleev Communications, 2018, Volume 28, Issue 3, Pages 272–274
DOI: https://doi.org/10.1016/j.mencom.2018.05.014
(Mi mendc1735)
 

This article is cited in 5 scientific papers (total in 5 papers)

Communications

New polymethacrylic nonlinear optical materials containing multichromophores in the side chain

T. A. Vakhonina, A. A. Kadyrova, T. M. Sarvarov, M. A. Smirnov, N. V. Ivanova, A. R. Khamatgalimov, M. Yu. Balakina, O. G. Sinyashin

A.E. Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center of the Russian Academy of Sciences, Kazan, Russian Federation
Full-text PDF (284 kB) Citations (5)
Abstract: New polymer materials based on methacrylic copolymers with chromophore-containing dendritic fragments in the side chain have been obtained. The nonlinear optical coefficients of 22, 23 and 28 pm V–1 have been determined for polymers with 18, 21 and 30 mol% content of dendritic fragments, respectively.
Document Type: Article
Language: English


Citation: T. A. Vakhonina, A. A. Kadyrova, T. M. Sarvarov, M. A. Smirnov, N. V. Ivanova, A. R. Khamatgalimov, M. Yu. Balakina, O. G. Sinyashin, “New polymethacrylic nonlinear optical materials containing multichromophores in the side chain”, Mendeleev Commun., 28:3 (2018), 272–274
Linking options:
  • https://www.mathnet.ru/eng/mendc1735
  • https://www.mathnet.ru/eng/mendc/v28/i3/p272
  • This publication is cited in the following 5 articles:
    1. A. I. Gaysin, T. A. Vakhonina, E. O. Yakovleva, M. Yu. Balakina, O. G. Sinyashin, “Copolymers of 2-hydroxy-3-(N-methyl-N-phenylamino)propyl methacrylate with methyl methacrylate and their microstructure”, Mendeleev Commun., 34:3 (2024), 332–334  mathnet  crossref
    2. Tatyana A. Vakhonina, Guzel M. Fazleeva, Alexey A. Kalinin, Adel I. Gaysin, Artemiy G. Shmelev, Liliya N. Islamova, Olga D. Fominykh, Anastasiya V. Sharipova, Nikita I. Shalin, Anvar S. Mukhtarov, Ayrat R. Khamatgalimov, Marina Yu. Balakina, “Methacrylic copolymers with quinoxaline chromophores in the side chain exhibiting quadratic nonlinear optical response”, J of Applied Polymer Sci, 139:32 (2022)  crossref
    3. A. I. Gaisin, T. A. Vakhonina, A. Sh. Mukhtarov, A. G. Shmelev, M. Yu. Balakina, “Synthesis and copolymerization of new methacrylic monomers for the creation of nonlinear optical polymer materials”, Russ Chem Bull, 70:9 (2021), 1757  crossref
    4. V. V. Shelkovnikov, S. L. Mikerin, A. E. Simanchuk, P. A. Chubakov, S. V. Korotaev, N. A. Orlova, V. N. Berezhnaya, I. Yu. Kargapolova, A. M. Maksimov, R. A. Ishchenko, N. D. Ryazanov, “Nonlinear-Optical Properties of Polyfluorotriphenylpyrazoline-Dicyanoisophorone Dyes in a Polycarbonate Matrix”, Optoelectron.Instrument.Proc., 57:6 (2021), 611  crossref
    5. T. A. Vakhonina, A. A. Kalinin, N. V. Ivanova, A. A. Kadyrova, S. M. Sharipova, M. A. Smirnov, A. Sh. Mukhtarov, M. Yu. Balakina, “Polymer Matrix Effect on Nonlinear Optical Response of Composite Materials Doped with a Chromophore Containing a Divinylqunoxaline π-Electron Bridge”, Russ J Gen Chem, 90:3 (2020), 448  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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