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Mendeleev Communications, 1995, Volume 5, Issue 4, Pages 129–131
DOI: https://doi.org/10.1070/MC1995v005n04ABEH000489
(Mi mendc5063)
 

This article is cited in 28 scientific papers (total in 28 papers)

Self-assembling of Associates of Amino Acids and Dipeptide Derivatives of [60]Fullerene in Aqueous Solution: a Study by Scanning Electron Microscopy

M. E. Vol'pin, E. M. Belavtseva, V. S. Romanova, A. I. Lapshin, L. I. Aref'eva, Z. N. Parnes

A.N. Nesmeyanov Institute of Organoelement Compounds of Russian Academy of Sciences, Moscow, Russian Federation
Abstract: Amino acid and dipeptide derivatives of [60]fullerene form associates in aqueous solution.
Document Type: Article
Language: English


Citation: M. E. Vol'pin, E. M. Belavtseva, V. S. Romanova, A. I. Lapshin, L. I. Aref'eva, Z. N. Parnes, “Self-assembling of Associates of Amino Acids and Dipeptide Derivatives of [60]Fullerene in Aqueous Solution: a Study by Scanning Electron Microscopy”, Mendeleev Commun., 5:4 (1995), 129–131
Linking options:
  • https://www.mathnet.ru/eng/mendc5063
  • https://www.mathnet.ru/eng/mendc/v5/i4/p129
  • This publication is cited in the following 28 articles:
    1. Konstantin A. Kochetkov, Valentina S. Romanova, Nadezhda Yu Shepeta, “Synthesis of hybrid nanostructures based on e -carboxy-dihydroxycobinamide and N -(monohydrofullerenyl)- l -fluorophenylalanines”, Fullerenes, Nanotubes and Carbon Nanostructures, 32:9 (2024), 836  crossref
    2. O. V. Yamskova, D. V. Kurilov, V. A. Volkov, M. V. Voronkov, I. V. Zavarzin, “C<sub>60</sub> Fullerene Amino Acid Derivatives: Synthesis and Biomedical Applications”, RUBI, 49:5 (2023), 455  crossref
    3. O. V. Yamskova, D. V. Kurilov, V. A. Volkov, M. V. Voronkov, I. V. Zavarzin, “C60 Fullerene Amino Acid Derivatives: Synthesis and Biomedical Applications (A Review)”, Russ J Bioorg Chem, 49:5 (2023), 930  crossref
    4. Alexander Yu. Rybkin, Alexei V. Kozlov, Alexandra Yu. Belik, Alexander I. Kotelnikov, Nanomaterials for Photodynamic Therapy, 2023, 349  crossref
    5. V. S. Romanova, I. A. Khotina, N. S. Kushakova, A. I. Kovalev, V. G. Kharitonova, D. V. Kupriyanova, A. V. Naumkin, “Compound based on star-shaped oligophenylene and fullerene C60”, Mendeleev Commun., 32:6 (2022), 783–785  mathnet  crossref
    6. N. A. Charykov, V. A. Keskinov, A. V. Petrov, “Adducts of Lower Fullerenes and Amino Acids: Synthesis, Identification, and Quantum-Mechanical Modeling of Their Physicochemical Properties”, Russ. J. Phys. Chem., 95:12 (2021), 2359  crossref
    7. A.Yu. Belik, A.Yu. Rybkin, N.S. Goryachev, A.P. Sadkov, N.V. Filatova, A.G. Buyanovskaya, V.N. Talanova, Z.S. Klemenkova, V.S. Romanova, M.O. Koifman, A.A. Terentiev, A.I. Kotelnikov, “Nanoparticles of water-soluble dyads based on amino acid fullerene C60 derivatives and pyropheophorbide: Synthesis, photophysical properties, and photodynamic activity”, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 260 (2021), 119885  crossref
    8. A.Yu. Rybkin, A.Yu. Belik, N.S. Goryachev, P.A. Mikhaylov, O.A. Kraevaya, N.V. Filatova, I.I. Parkhomenko, A.S. Peregudov, A.A. Terent'ev, E.A. Larkina, A.F. Mironov, P.A. Troshin, A.I. Kotelnikov, “Self-assembling nanostructures of water-soluble fullerene[60]–chlorin e6 dyads: Synthesis, photophysical properties, and photodynamic activity”, Dyes and Pigments, 180 (2020), 108411  crossref
    9. Pauline Minois, Jérôme Bayardon, Rita Meunier-Prest, Sylvain Jugé, “[60]Fullerene l-Amino Acids and Peptides: Synthesis under Phase-Transfer Catalysis Using a Phosphine–Borane Linker. Electrochemical Behavior”, J. Org. Chem., 82:21 (2017), 11358  crossref
    10. Mira Bjelaković, Tatjana Kop, Veselin Maslak, Dragana Milić, “Synthesis and characterization of highly ordered self-assembled bioactive fulleropeptides”, J Mater Sci, 51:2 (2016), 739  crossref
    11. Mira S Bjelaković, Tatjana J Kop, Jelena Ðorđević, Dragana R Milić, “Fulleropeptide esters as potential self-assembled antioxidants”, Beilstein J. Nanotechnol., 6 (2015), 1065  crossref
    12. Nikolay O. Mchedlov-Petrossyan, “Fullerenes in Liquid Media: An Unsettling Intrusion into the Solution Chemistry”, Chem. Rev., 113:7 (2013), 5149  crossref
    13. G. V. Andrievsky, A. A. Avdeenko, L. I. Derevyanchenko, V. I. Fomin, V. K. Klochkov, V. S. Kurnosov, A. V. Peschanskii, NATO Science Series II: Mathematics, Physics and Chemistry, 165, Spectroscopy of Emerging Materials, 2005, 151  crossref
    14. G.V. Andrievsky, V.K. Klochkov, A.B. Bordyuh, G.I. Dovbeshko, “Comparative analysis of two aqueous-colloidal solutions of C60 fullerene with help of FTIR reflectance and UV–Vis spectroscopy”, Chemical Physics Letters, 364:1-2 (2002), 8  crossref
    15. I. M. Andreev, V. S. Romanova, A. O. Petrukhina, S. M. Andreev, “Amino-acid derivatives of fullerene C60 behave as lipophilic ions penetrating through biomembranes”, Phys. Solid State, 44:4 (2002), 683  crossref
    16. Alberto Bianco, Tatiana Da Ros, Maurizio Prato, Claudio Toniolo, “Fullerene‐based amino acids and peptides”, Journal of Peptide Science, 7:4 (2001), 208  crossref
    17. G.V Andrievsky, V.K Klochkov, E.L Karyakina, N.O Mchedlov-Petrossyan, “Studies of aqueous colloidal solutions of fullerene C60 by electron microscopy”, Chemical Physics Letters, 300:3-4 (1999), 392  crossref
    18. N. O. Mchedlov-Petrossyan, V. K. Klochkov, G. V. Andrievsky, E. L. Karyakina, A. A. Ishchenko, “Interaction between cationic dyes and colloidal particles in a C60 hydrosol”, Mendeleev Commun., 9:2 (1999), 63–65  mathnet  crossref
    19. M. E. Vol'pin, Z. N. Parnes, V. S. Romanova, “Amino acid and peptide derivatives of fullerene”, Russ Chem Bull, 47:5 (1998), 1021  crossref
    20. A. N. Danilenko, V. S. Romanova, E. F. Kuleshova, Z. N. Parnes, E. E. Braudo, “Heat capacities of aqueous solutions of amino acid and dipeptide derivatives of fullerene”, Russ Chem Bull, 47:11 (1998), 2134  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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