2017 (1) 6

https://doi.org/10.15407/polymerj.39.01.44

Investigation of b-cyclodextrin-containing pseudorotaxane by pyrolysis mass spectrometry method

 

L.A. Orel, V.V. Boyko, V.I. Bortnitskiy, L.V. Kobrina, S.I. Sinelnikov, S.V. Riabov

 

Institute of Macromolecular Chemistry NAS of Ukraine

48, Kharkivske shose, Kyiv, 02160, Ukraine

 

Polym. J., 2017, 39, No. 1: 44-48.

 

Section: Structure and properties.

 

Language: Ukrainian.

 

Abstract:

 

Recently, in the field of supramolecular chemistry much attention is paid to obtain a rotaxanes, which are inclusion complexes consisting of cyclic molecules being strung on a linear molecule. According to a specialists opinion involved in the supramolecular area, one of the most difficult task is to define a composition of rotaxane’s inclusion complex. The method of pyrolysis mass spectrometry allows the structure of “host-guest” complex to be investigated.

In this work the structure of pseudorotaxane based on b-cyclodextrin and polyoxypropylenedimethacrylate was studied by the pyrolysis mass spectrometry method. A probable composition of ion fragments and intensity of their emissions in the mass spectra was established during pyrolysis of pure both b-cyclodextrin and polyoxypropylenedimethacrylate, their physical mixture and pseudorotaxane. Thus, the results obtained confirm the formation of pseudorotaxane’s structure.

 

Key words: b-cyclodextrin, pseudorotaxane, pyrolysis mass spectrometry, pyrolysis, structure.

 

Література

  1. 1. Harada A., Takashima Y., Yamaguchi H. Cyclodextrin-based supramolecular polymers. Chem. Society Reviews, 2009, 38: 875–882.
  2. 2. Panova I.G., Topchieva I.N. Rotaxanes and polyrotaxanes. Synthesis and supramolecular devices on their basis. Russian Chem. Reviews, 2001, 70, no. 1: 28–51.
  3. 3. Wenz G., Han B-H., Muller А. Cyclodextrin Rotaxanes and Polyrotaxanes. Chem. Reviews, 2006, 106: 782–817.
  4. 4. Masanov A.Y. Chemistry outside polymers. Chemistry and life, 2006, no. 9: 24–27.
  5. 5. Xing M., Yanli Z. Biomedical Applications of Supramolecular Systems Based on Host”Guest Interaction. Chem. Reviews, 2015, 115: 7794-7839.
  6. 6. Popova I.E., Kazarin L.A., Topcheva I.N. Direct method by defining the composition of inclusion complexes based on poly (propylene oxide) and b-cyclodextrin. Chemistry, 2001, 42, no. 2: 125–127.
  7. 7. Riabov S.V., Boyko V.V., Bortnytskyy V.I., Dmytriyeva T.V., Kobrina L.V., Kercha Y.Y. Mass-spectrometric studies of inclusion complexes of silylation derivative of b-cyclodextrin with organic compounds obtained in the aqueous environment. Ukrainian Сhem. J, 2009, 75, no. 11: 58–63.
  8. 8. Riabov S.V., Boyko V.V., Bortnytskyy V.I., Dmytriyeva T.V., Babich I.V., Kercha Y.Y. Mass- spectrometric studies of inclusion complex of b-cyclodextrin with albumin. Polymer J, 2012, 34, no. 3: 283–286.
  9. 9. Babich I.V., Riabov S.V., Boyko V.V., Dmytriyeva T.V., Bortnytskyy V.I., Kozlov A.V., Kercha Y.Y. Inclusion complexes of cyclodextrins with albumin. Reports NANU, 2013, no. 1: 118–122.
  10. 10. Gordon A.J, Ford R.A. The chemist’s companion: a handbook of practical data, techniques and references. Wiley, New York, 1972: 541.
  11. 11. Sidel’nikv V.A., Gur’yanova L.V., Utkin V.A., Malakhov V.V., Kolchin A.M. Katalog sokrashchennyh mass-spektrov [Short catalogue of mass spectra.]. Nauka, Novosibirsk, 1981: 187 (in Russian).
  12. 12. Pozuelo J., Mendicuti F., Mattice W. Inclusion complexes of chain molecules with cycloamyloses III. Molecular dynamics of simulations of polyrotaxanes formed by poly(propylene glycol) and b-cyclodextrins. Polymer J., 1998, 30, no. 6: 479–484.