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Mendeleev Communications, 2020, Volume 30, Issue 2, Pages 171–173
DOI: https://doi.org/10.1016/j.mencom.2020.03.013
(Mi mendc1137)
 

This article is cited in 18 scientific papers (total in 18 papers)

Communications

Porous polylactide prepared by the delocalized crazing as a template for nanocomposite materials

E. S. Trofimchuka, M. A. Moskvinaa, O. A. Ivanovaa, V. V. Potseleeva, V. A. Deminabc, N. I. Nikonorovaa, A. V. Bakirovbc, N. G. Sedushbc, S. N. Chvalunbc

a Department of Chemistry, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
b N.S. Enikolopov Institute of Synthetic Polymeric Materials, Russian Academy of Sciences, Moscow, Russian Federation
c National Research Centre 'Kurchatov Institute', Moscow, Russian Federation
Abstract: Experimental conditions have been established for the preparation of stable open-pore matrices with pore diameters of 10–20nm on the basis of semicrystalline polylactide films by thedelocalized crazing mechanism. The synthesis of phosphates of calcium (brushite) and magnesium (struvite) in the pores of such a polymer matrix allows one to tune the size of the formed crystallites, which has appeared to be about 30nm, and to obtain nanocomposites with high dispersity of the components. The resulting nanocomposites were characterized by SAXS, SEM, TGA and XRD methods.
Keywords: polylactide, uniaxial tension, crazing, porous matrix, phosphates, brushite, struvite, nanocomposite.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (297.3 Kb)


Citation: E. S. Trofimchuk, M. A. Moskvina, O. A. Ivanova, V. V. Potseleev, V. A. Demina, N. I. Nikonorova, A. V. Bakirov, N. G. Sedush, S. N. Chvalun, “Porous polylactide prepared by the delocalized crazing as a template for nanocomposite materials”, Mendeleev Commun., 30:2 (2020), 171–173
Linking options:
  • https://www.mathnet.ru/eng/mendc1137
  • https://www.mathnet.ru/eng/mendc/v30/i2/p171
  • This publication is cited in the following 18 articles:
    1. A. Cheremnykh, P. Kovaleva, I. Bulygina, A. Korol, I. Krupatin, A. Nikitin, E. Statnik, F. Senatov, “Structural changes in composite material PLA/CoFe2O4 during the realization of the shape memory effect”, Materials Letters, 372 (2024), 137045  crossref
    2. M.A. Mikhailenko, M.R. Sharafutdinov, K.E. Kuper, B.P. Tolochko, A.S. Ulikhin, V.K. Popov, M.V. Korobeinikov, Trudy V nauchno-tekhnicheskogo Seminara po elektronno-puchkovomu oborudovaniyu i tekhnologiyam, 2024, 57  crossref
    3. A. Yu. Yarysheva, A. Yu. Kopnov, A. K. Berkovich, A. V. Bakirov, L. M. Yarysheva, O. V. Arzhakova, S. N. Chvalun, “Amorphization of poly(vinyl alcohol) in the mesoporous matrix based on high-density polyethylene”, Mendeleev Commun., 34:4 (2024), 604–605  mathnet  crossref
    4. Elena E. Mastalygina, Kristine V. Aleksanyan, “Recent Approaches to the Plasticization of Poly(lactic Acid) (PLA) (A Review)”, Polymers, 16:1 (2023), 87  crossref
    5. Vladislav Potseleev, Sergey Uspenskii, Elena Trofimchuk, Anastasia Bolshakova, Anna Kasatova, Dmitrii Kasatov, Sergey Taskaev, “Nanocomposite Materials Based on Polylactide and Gold Complex Compounds for Absorbed Dose Diagnostics in BNCT”, IJMS, 24:22 (2023), 16492  crossref
    6. D. V. Beigulenko, A. S. Semyonkin, J. A. Malinovskaya, P. A. Melnikov, E. I. Medyankina, T. S. Kovshova, Yu. V. Ermolenko, S. E. Gelperina, “Internalization of PLGA nanoparticles coated with poloxamer 188 in glioma cells: A confocal laser scanning microscopy study”, Mendeleev Commun., 33:3 (2023), 340–342  mathnet  crossref
    7. A. I. Kovalev, I. A. Khotina, “Microporous polymers based on triacetylarenes”, Mendeleev Commun., 32:2 (2022), 244–246  mathnet  crossref
    8. Irina A. Khotina, Natalia S. Kushakova, Victoria G. Kharitonova, Daria V. Kupriyanova, Suria A. Babich, Alexey I. Kovalev, “Second generation phenylene dendrimer, 1,3,5-tris[4-(3,5-diphenylphenyl)phenyl]benzene, as a precursor of a new carbon material”, Mendeleev Communications, 31:3 (2021), 397  crossref
    9. E. S. Trofimchuk, V. V. Potseleev, M. A. Khavpachev, M. A. Moskvina, N. I. Nikonorova, “Polylactide-Based Porous Materials: Synthesis, Hydrolytic Degradation Features, and Application Areas”, Polym. Sci. Ser. C, 63:2 (2021), 199  crossref
    10. N. M. Ivanova, E. O. Filippova, S. I. Tverdokhlebov, N. V. Levkovich, P. Yu. Apel, “Preparation, Structure, and Properties of Track-Etched Membranes Based on Polylactic Acid”, Membr. Membr. Technol., 3:5 (2021), 282  crossref
    11. V. A. Demina, N. G. Sedush, E. N. Goncharov, S. V. Krasheninnikov, A. E. Krupnin, N. G. Goncharov, S. N. Chvalun, “Biodegradable Nanostructured Composites for Surgery and Regenerative Medicine”, Nanotechnol Russia, 16:1 (2021), 2  crossref
    12. L. M. Yarysheva, A. Yu. Yarysheva, O. V. Arzhakova, A. L. Volynskii, “Mesoporous films based on isotactic polypropylene deformed via the mechanism of crazing”, Russ Chem Bull, 70:1 (2021), 62  crossref
    13. M. V. Podzorova, Yu. V. Tertyshnaya, “Kinetic patterns for thermal oxidation of binary and ternary blends based on polylactide and polyethylene”, Russ Chem Bull, 70:9 (2021), 1791  crossref
    14. A. V. Shlyakhtin, I. E. Nifant'ev, M. A. Kosarev, A. N. Tavtorkin, P. V. Ivchenko, “The synthesis and copolymerization of 4-hydroxybenzylglycolide: experimental and theoretical aspects”, Mendeleev Commun., 31:5 (2021), 701–703  mathnet  crossref
    15. V. V. Potseleev, E. S. Trofimchuk, N. I. Nikonorova, “Kinetics of the release of brilliant green from nanoporous polylactide obtained by a crazing mechanism”, Mendeleev Commun., 31:4 (2021), 515–516  mathnet  crossref
    16. E. V. Kuznetsova, K. T. Kalinin, N. G. Sedush, A. A. Nazarov, D. S. Volkov, S. N. Chvalun, “Structure and cytotoxicity of biodegradable poly(d,l-lactide-co-glycolide) nanoparticles loaded with oxaliplatin”, Mendeleev Commun., 31:4 (2021), 512–514  mathnet  crossref
    17. Elena S. Trofimchuk, Marina A. Moskvina, Nina I. Nikonorova, Alexander V. Efimov, Elizaveta S. Garina, Tatiana E. Grokhovskaya, Olga A. Ivanova, Artem V. Bakirov, Nikita G. Sedush, Sergei N. Chvalun, “Hydrolytic degradation of polylactide films deformed by the environmental crazing mechanism”, European Polymer Journal, 139 (2020), 110000  crossref
    18. A. Yu. Yarysheva, A. A. Dolgova, L. M. Yarysheva, O. V. Arzhakova, “Hydrophilization of polypropylene films by poly(ethylene oxide) via intercrystallite crazing”, Mendeleev Commun., 30:4 (2020), 507–508  mathnet  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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