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Founded on May 20, 1957

FLNR  Directorate
Scientific Department
Chief Engineer Department
Center of Applied Physics

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Center of Applied Physics

  • Track membranes, micro- and nanoporous materials


  • Years 2010-2015
  1. A. Rossouw, O.V. Artoshina, A.N. Nechaev, P.Yu. Apel, L. Petrik, W.J. Perold, C.A. Pineda-Vargas. Stable ion beam analysis (RBS and PIXE) study of photocatalytic track-etched membranes // Exotic Nuclei. IASEN-2013 Proceedings of the First International African Symposium on Exotic Nuclei. 2015. P. 591-596.
  2. L. G. Molokanova, A. N. Nechaev, P. Yu. Apel. The effect of surfactant concentration on the geometry of pores resulting from etching of poly(ethylene naphthalate) films irradiated by high-energy ions // Colloid Journal. 2014. vol. 76. No. 2. P. 170-175.
  3. P.Yu. Apel, P. Ramirez, I.V. Blonskaya, O.L. Orelovich, B. Sartowska. Accurate characterization of single track-etched, conical nanopores // Phys. Chem. Chem. Phys. 2014. 16. 15214-15223.
  4. I.I. Barashkova, E.I. Bunyatova, L.I. Kravets. Polypropylene track membranes as a promising material for targets with polarized protons // Physics of Particles and Nuclei. 2014. Vol. 45. No. 1. P. 288-294.
  5. L.I. Kravets, S.N. Dmitriev, V. Satulu, B. Mitu, G. Dinescu. Formation of ‘diode-like’ polymer membranes // Romanian Reports in Physics. 2014. Vol. 66. № 4. P. 1165-1179.
  6. Apel, P.Yu. Track-Etching. In: Encyclopedia of Membrane Science and Technology. (2013) John Wiley and Sons, 1–25; doi: 10.1002/9781118522318.
  7. L. Kravets, A. Gilman, M. Yablokov, V. Elinson, B. Mitu, G. Dinescu. Surface and electrochemical properties of plasma-treated polypropylene track membrane. Plasma Processes and Polymers. 10 (2013) 603-618.
  8. P.Yu. Apel, I.V. Blonskaya, O.L. Orelovitch, B.A. Sartowska, R. Spohr. Asymmetric ion track nanopores for sensor technology. Reconstruction of pore profile from conductometric measurements. Nanotechnology 23 (2012) 225503 (10 pp).
  9. T.V. Ryazantseva, L.I. Kravets, V.M. Elinson. Plasma nanostructuring of the surface layer in track membranes for producing a highly efficacious biocompatible explantodrainage for the surgical management of refractory glaucoma. Inorganic Materials: Applied Research, 2012, Vol. 3, No. 5, pp. 408-416.
  10. P.Yu. Apel, S.N. Dmitriev. Micro- and nanoporous materials produced using accelerated heavy ion beams. Adv. Nat. Sci.: Nanosci. Nanotechnol. 2 (2011) 013002.
  11. Pavel Yu Apel, Irina V Blonskaya, Oleg L Orelovitch, Patricio Ramirez, Bozena A Sartowska. Effect of nanopore geometry on ion current rectification. Nanotechnology 22 (2011) 175302 (13 pp).
  12. Z. Lausevic, P.Yu. Apel, I.V. Blonskaya. The production of porous glassy carbon membranes from swift heavy ion irradiated Kapton. Carbon, v.49 ( 2011 ) 4948 –495
  13. T.V. Ryazantseva, L.I. Kravets, V.M. Elinson. Use of polymer track membranes with nanostructured surface as drainage in antiglaucomatous operations. // Surface and Coatings Technology. 2011. Vol. 205, Suppl. 2, p. S562-S566.
  14. L.I. Kravets, S.N. Dmitriev, V.A. Altynov, V. Satulu, B. Mitu, G. Dinescu. Synthesis of bilayer composite nanomembranes with conductivity asymmetry. // Elektrokhimiya. 2011, Vol. 47, No. 4, pp. 499-510.
  15. L.I. Kravets, N.E. Lizunov, A.Yu. Meshalkin, S.V. Robu, A.M. Andriesh, E.A. Akimova. Structure and electrochemical properties of polymeric composite membranes with a selective layer. // Elektrokhimiya. 2011, Vol. 47, No. 4, pp. 489-498
  16. O.L.Orelovich, B.A. Sartowska, A. Presz, P.Yu. Apel. Analysis of channel shapes in track membranes by scanning electron microscopy. J. Microscopy, 237, Pt 3 (2010) 404-406.
  17. Reimar Spohr, Cristian Zet, Bernd Eberhard Fischer, Helge Kiesewetter, Pavel Apel, Igor Gunko, Takeshi Ohgai and Lars Westerberg. Controlled fabrication of ion track nanowires and channels. Nucl. Instrum. Meth. in Phys. Res. B268 (2010) pp.676-686.
  18. Kravets L., Dmitriev S., Lizunov N., Satulu V., Mitu B., Dinescu G. Properties of poly(ethylene terephthalate) track membranes with a polymer layer obtained by plasma polymerization of pyrrole vapors. // Nuclear Instruments and Methods in Physics Research, B. 2010. V. 268. P. 485-492.
  19. Kravets L., Dmitriev S., Dinescu G., Satulu V., Gilman A., Yablokov M. Polymer composite nanomembranes with asymmetry of conductivity. // Materials Science Forum. 2010. V. 636-637. P. 812-818.
  20. L.I. Kravets, N.A. Palistrant. Preparation of polymeric nanostructured materials. // Zhurnal Prikladnoi Khimii, 2010, Vol. 83, No. 9, pp. 1538-1544.

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