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Mendeleev Communications, 2015, Volume 25, Issue 6, Pages 470–472
DOI: https://doi.org/10.1016/j.mencom.2015.11.025
(Mi mendc2449)
 

This article is cited in 10 scientific papers (total in 10 papers)

Communications

Synthesis of [60]fulleropyrrolidine–dithienylethene conjugates and DFT calculations of their photochromic properties

A. R. Tuktarov, A. A. Khuzin, L. M. Khalilov, A. R. Tulyabaev, A. R. Akhmetov, U. M. Dzhemilev

Institute of Petrochemistry and Catalysis, Ufa Federal Research Centre of the Russian Academy of Sciences, Ufa, Russian Federation
Abstract: Dithienylethene-containing fulleropyrrolidines were synthesized by 1,3-dipolar cycloaddition of in situ generated appropriately derivatized azomethine ylides to C60. The photochromic properties of these cycloadducts were predicted resorting to DFT calculations.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (1.2 Mb)


Citation: A. R. Tuktarov, A. A. Khuzin, L. M. Khalilov, A. R. Tulyabaev, A. R. Akhmetov, U. M. Dzhemilev, “Synthesis of [60]fulleropyrrolidine–dithienylethene conjugates and DFT calculations of their photochromic properties”, Mendeleev Commun., 25:6 (2015), 470–472
Linking options:
  • https://www.mathnet.ru/eng/mendc2449
  • https://www.mathnet.ru/eng/mendc/v25/i6/p470
  • This publication is cited in the following 10 articles:
    1. A. A. Nekrasov, N. V. Nekrasova, M. A. Savel'ev, A. A. Khuzin, V. A. Barachevskiǐ, A. R. Tulyabaev, A. R. Tuktarov, “Electrochemical investigation of a photochromic spiropyran containing a pyrrolidinofullerene moiety”, Mendeleev Commun., 33:4 (2023), 505–508  mathnet  crossref
    2. Artur A. Khuzin, Airat R. Tuktarov, Olga V. Venidiktova, Valery A. Barachevsky, Ilnur N. Mullagaliev, Timur R. Salikhov, Renat B. Salikhov, Leonard M. Khalilov, Liliya L. Khuzina, Usein M. Dzhemilev, “Hybrid Molecules Based on Fullerene C60 and Dithienylethenes. Synthesis and Photochromic Properties. Optically Controlled Organic Field‐Effect Transistors”, Photochem & Photobiology, 98:4 (2022), 815  crossref
    3. A. R. Tuktarov, R. B. Salikhov, A. A. Khuzin, N. R. Popod'ko, I. N. Safargalin, I. N. Mullagaliev, U. M. Dzhemilev, “Photocontrolled organic field effect transistors based on the fullerene C60 and spiropyran hybrid molecule”, RSC Adv., 9:13 (2019), 7505  crossref
    4. A. R. Tuktarov, A. A. Khuzin, U. M. Dzhemilev, “Acid-base isomerization of hybrid molecules based on fullerene C60 and spiropyrans”, Mendeleev Commun., 29:2 (2019), 229–231  mathnet  crossref
    5. Airat R. Tuktarov, Zulfiya R. Shakirova, Usein M. Dzhemilev, “One-Pot Method for the Synthesis of 2,5-Unsubstituted Pyrrolidino[3′,4′:1,9]fullerenes”, Org. Lett., 19:14 (2017), 3863  crossref
    6. A. R. Tuktarov, A. R. Akhmetov, A. A. Khuzin, O. V. Venidiktova, V. A. Barachevsky, U. M. Dzhemilev, “Synthesis and photochromic properties of hybrid molecules based on fullerene C60 and 3,3′-(cyclopent-1-ene-1,2-diyl)bis(5-chloro-2-methylthiophene)”, Russ J Org Chem, 53:6 (2017), 891  crossref
    7. A. R. Tuktarov, Z. R. Shakirova, L. M. Khalilov, Yu. B. Dudkina, Yu. H. Budnikova, R. B. Salikhov, I. N. Safargalin, U. M. Dzhemilev, “Electrochemical and electrophysical properties of aminomethano- and tetrahydropyridino-C60-fullerenes”, Mendeleev Commun., 27:2 (2017), 201–203  mathnet  crossref
    8. A. R. Tuktarov, Z. R. Shakirova, Yu. G. Budnikova, R. B. Salikhov, U. M. Dzhemilev, “New one-pot method for the synthesis of pyrrolidinofullerenes”, RSC Adv., 6:85 (2016), 81847  crossref
    9. E. N. Shepelenko, Yu. V. Revinskii, K. S. Tikhomirova, O. G. Karamov, A. D. Dubonosov, V. A. Bren, V. I. Minkin, “Photochromic and fluorescent 5-coumarinyl-4-pyrrolylthiazoles”, Mendeleev Commun., 26:3 (2016), 193–195  mathnet  crossref
    10. A. R. Tuktarov, A. A. Khuzin, A. R. Akhmetov, L. M. Khalilov, A. R. Tulyabaev, V. A. Barachevskiǐ, O. V. Venidiktova, U. M. Dzhemilev, “Covalent binding of fullerene C60 to dithienylethene as a promising approach to the preparation of new photochromic compounds”, Mendeleev Commun., 26:2 (2016), 143–145  mathnet  crossref
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