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Mendeleev Communications, 2015, Volume 25, Issue 5, Pages 361–363
DOI: https://doi.org/10.1016/j.mencom.2015.09.015
(Mi mendc2409)
 

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

Communications

Mechanical and thermophysical properties of biodegradable polylactide compositions with ethyl cellulose and chitosan containing poly(ethylene glycol)

S. Z. Rogovina, K. V. Aleksanyan, A. V. Grachev, A. A. Berlin, E. V. Prut

N.N. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences, Moscow, Russian Federation
Abstract: The compositions of chitosan and ethyl cellulose with polylactide were obtained by the blending of components under shear deformation conditions in a Brabender mixer, and the influence of low-molecular-weight poly(ethylene glycol) on the mechanical and thermophysical properties of the blends was estimated.
Document Type: Article
Language: English


Citation: S. Z. Rogovina, K. V. Aleksanyan, A. V. Grachev, A. A. Berlin, E. V. Prut, “Mechanical and thermophysical properties of biodegradable polylactide compositions with ethyl cellulose and chitosan containing poly(ethylene glycol)”, Mendeleev Commun., 25:5 (2015), 361–363
Linking options:
  • https://www.mathnet.ru/eng/mendc2409
  • https://www.mathnet.ru/eng/mendc/v25/i5/p361
  • This publication is cited in the following 18 articles:
    1. Noboru Osaka, “Preparation and Properties of Immiscible Poly(lactic acid)/Ethyl Cellulose Bioplastic Blends with Good Transparency and Optical Control by Drawing”, Journal of Macromolecular Science, Part B, 63:6 (2024), 478  crossref
    2. Kristine V. Aleksanyan, Regina S. Smykovskaya, Nadezhda A. Samoilova, Viktor A. Novikov, Aleksander M. Shakhov, Arseny V. Aybush, Olga P. Kuznetsova, Sergey M. Lomakin, Yana V. Ryzhmanova, “Development of Poly(lactic acid)-Based Biocomposites with Silver Nanoparticles and Investigation of Their Characteristics”, Polymers, 16:19 (2024), 2758  crossref
    3. Wenxi Cheng, Yuanhang Cao, Wei Miao, Yongjian Zhang, Li Tian, Haowei Lin, Weiqiang Song, Yike Zhang, Tao Wang, “Polylactide/polyvinyl acetate blends containing different molecular weights of poly(ethylene glycol)”, Iran Polym J, 33:12 (2024), 1689  crossref
    4. A. A. Ol'khov, S. G. Karpova, S. Z. Rogovina, L. A. Zhorina, A. S. Kurnosov, A. L. Iordanskii, “The Influence of Ozone on the Structure of Biodegradable Matrices Based on Mixtures of Poly(3-Hydroxybutyrate), Polylactide, and Chitosan”, Inorg. Mater. Appl. Res., 14:1 (2023), 70  crossref
    5. Elena E. Mastalygina, Kristine V. Aleksanyan, “Recent Approaches to the Plasticization of Poly(lactic Acid) (PLA) (A Review)”, Polymers, 16:1 (2023), 87  crossref
    6. Kristine V. Aleksanyan, “Polysaccharides for Biodegradable Packaging Materials: Past, Present, and Future (Brief Review)”, Polymers, 15:2 (2023), 451  crossref
    7. S. Z. Rogovina, L. A. Zhorina, A. A. Olkhov, A. R. Yakhina, E. L. Kucherenko, A. L. Iordanskiy, A. A. Berlin, “Hydrolysis of Biodegradable Fibrous and Film Materials Based on Polylactide and Poly(3-hydroxybutyrate) Polyesters and Their Compositions with Chitosan”, Polym. Sci. Ser. D, 15:3 (2022), 447  crossref
    8. S. Z. Rogovina, L. A. Zhorina, A. L. Iordanskii, E. V. Prut, A. R. Yakhina, A. V. Grachev, A. V. Shapagin, O. P. Kuznetsova, A. A. Berlin, “New Biodegradable Absorbents Based on Polylactide, Poly(3-hydroxybutyrate), and Chitosan for Sorption of Iron and Chromium Ions”, Polym. Sci. Ser. A, 63:6 (2021), 804  crossref
    9. L. A. Zhorina, A. L. Iordanskii, S. Z. Rogovina, A. V. Grachev, A. R. Yakhina, E. V. Prut, A. A. Berlin, “Thermal characterization and sorption of FeIII ion by ternary polylactide–poly-3-hydroxybutyrate–chitosan compositions”, Mendeleev Commun., 31:1 (2021), 104–106  mathnet  crossref
    10. Mariia Stepanova, Ilia Averianov, Mikhail Serdobintsev, Iosif Gofman, Natalya Blum, Natalya Semenova, Yuliya Nashchekina, Tatiana Vinogradova, Viktor Korzhikov-Vlakh, Mikko Karttunen, Evgenia Korzhikova-Vlakh, “PGlu-Modified Nanocrystalline Cellulose Improves Mechanical Properties, Biocompatibility, and Mineralization of Polyester-Based Composites”, Materials, 12:20 (2019), 3435  crossref
    11. Svetlana Rogovina, Eduard Prut, Kristine Aleksanyan, Vadim Krasheninnikov, Evgeniya Perepelitsyna, Dmitrii Shashkin, Natalya Ivanushkina, Aleksandr Berlin, “Production and investigation of structure and properties of polyethylene–polylactide composites”, J of Applied Polymer Sci, 136:22 (2019)  crossref
    12. S. Z. Rogovina, E. V. Prut, K. V. Aleksanyan, V. G. Krasheninnikov, E. O. Perepelitsina, D. P. Shashkin, A. A. Berlin, “Composites Based on Starch and Polylactide”, Polym. Sci. Ser. B, 61:3 (2019), 334  crossref
    13. P.E. Goryunova, S.S. Sologubov, A.V. Markin, N.N. Smirnova, S.D. Zaitsev, N.E. Silina, L.A. Smirnova, “Thermodynamic properties of block copolymers of chitosan with poly(D,L-lactide)”, Thermochimica Acta, 659 (2018), 19  crossref
    14. Svetlana Z. Rogovina, Kristine V. Aleksanyan, Anastasia A. Loginova, Natalya E. Ivanushkina, Leonid V. Vladimirov, Eduard V. Prut, Aleksandr A. Berlin, “Influence of PEG on Mechanical Properties and Biodegradability of Composites Based on PLA and Starch”, Starch Stärke, 70:7-8 (2018)  crossref
    15. S. Z. Rogovina, K. V. Aleksanyan, A. Ya. Gorenberg, N. E. Ivanushkina, E. V. Prut, A. A. Berlin, “Investigation of biodegradability of composites based on polyethylene and polysaccharides by independent methods”, Mendeleev Commun., 28:1 (2018), 105–107  mathnet  crossref
    16. N. G. Sedush, V. V. Izraylit, A. K. Mailyan, D. V. Savinov, Yu. I. Kiryukhin, S. N. Chvalun, “Kinetics of ring-opening polymerization of d,l-lactide catalyzed by functional Zn–guanidine complex with biphenyl-4-methanol activator”, Mendeleev Commun., 27:3 (2017), 281–282  mathnet  crossref
    17. S. Z. Rogovina, “Biodegradable polymer composites based on synthetic and natural polymers of various classes”, Polym. Sci. Ser. C, 58:1 (2016), 62  crossref
    18. S. Z. Rogovina, K. V. Aleksanyan, A. A. Kosarev, N. E. Ivanushkina, E. V. Prut, A. A. Berlin, “Biodegradable polymer composites based on polylactide and cellulose”, Polym. Sci. Ser. B, 58:1 (2016), 38  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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