id_bar
about
Bibliography

L. O. Dolgov’s list of publications

 

  1. L. Dolgov, O. Yaroshchuk, Electro-optic properties of nematic liquid crystal filled with monodispersed inorganic nanoparticles. SPIE Proceed., 5257,  48-58 (2003).
  2.  
  3. L. Dolgov, O. Yaroshchuk, A. Kovalchuk, and D. Wiersma, Low frequency dielectric relaxation in liquid crystal – polymer composites. SPIE proceed., 5507, 215-220 (2004).
  4. L. Dolgov and O. Yaroshchuk, Electro-optics of suspensions of monodispersed inorganic nanoparticles in liquid crystals.Mol.Cryst.Liq.Cryst., 409, pp. 77-89 (2004).  pdf
  5. Yu. Piryatinski, O. Yaroshchuk, L. Dolgov, T. Bidna, D. Enke, Photoluminescence of LC azo derivatives in the nano-sized pores, Optics and Spectroscopy, 97 (4), 566-571 (2004) [in Russian pdf]; 97 (4), 537-542 (2004) [in English .
  6.  
  7. A. Kiselev, O. Yaroshchuk, L. Dolgov, Ordering of droplets and light scattering in polymer dispersed liquid crystal films. J. Phys.: Cond. Matt. 16 7183-7197 (2004).  pdf
  8.  
  9. L. Dolgov, O. Yaroshchuk. Electrooptic properties of liquid crystals filled with silica particles of different sorts. Colloid and Polymer Science, 282, 1403-1408 (2004). pdf
  10.  
  11. O. Yaroshchuk, R. Kravchuk, L. Dolgov, A. Khokhlov, P.C. Liu, C.D. Lee, A. Bol, Liquid Crystals Alignment on the Plasma Beam Etched Inorganic Coatings Prepared by Sputtering Deposition, pp. 97-100, ADT-2004 SID Symp. Proc., September 7-10, 2004, Raubichi, Belarus. pdf 
  12.  
  13. O. Yaroshchuk, L. Dolgov and A. Kiselev, Electro-optics and structural peculiarities of liquid crystal-nanoparticle-polymer composites. Phys.Rev.E., 72, 051715-1-051715-11 (2005). pdf
  14.  
  15. O. Yaroshchuk, L. Dolgov, A. Kiselev,  Nanoparticles-Doped PDLC: Electrooptics and Structural Peculiarities, Nanosystems, Nanomaterials, Nanotechnologies, 3 (2), 489-498 (2005). pdf
  16.  
  17. Yu. Piryatinski, O. Yaroshchuk, L. Dolgov, D. Enke, Fluorescence peculiarities of nematic liquid crystal 5CB in nanoporous glasses, Nanosystems, Nanomaterials, Nanotechnologies, 3 (2), 479-487 (2005). [in Russian]. pdf
  18.  
  19. Yu. Piryatinski, O. Yaroshchuk, L. Dolgov, T. Bidna, and D. Enke,  Fluorescence of liquid crystal azo derivative in nanosize pores, Nanosystems, Nanomaterials, Nanotechnologies, 3 (2), 473-478 (2005). [in Russian]. pdf
  20.  
  21. L. Dolgov and O. Yaroshchuk, The method to suppress off-axis haze of PDLC, Proc. of ADT’05 (Crimea, Oct., 2005), 233-239. pdf
  22.  
  23. O. Yaroshchuk, R. Kravchuk, L. Dolgov, E. Telesh, A. Khokhlov, J. Brill, N. Fruehauf, and M.A Reijme, Liquid crystal alignment on the films deposited by sputtering: dependence on target material and gaseous feed, Proc. of ADT’05 (Crimea, Oct., 2005), 240-247. pdf
  24.  
  25. Kovalchuk A.V., Dolgov L.O., Bugayova L.M., Yaroshchuk O.V. The Peculiarities of Photopolymerization in the Composite “Pre–polymer – TiO2 Nanoparticles // Mol. Cryst. Liq. Cryst. –2005.– Vol. 427.–P.187–196 [487–496]. pdf
  26.  
  27. Chashechnikova, I.; Dolgov, L.; Gavrilko, T.; Puchkovska, G.; Shaydyuk, Ye.; Lebovka, N.; Moraru, V.; Baran, J.; Ratajczak, H. (2005). Optical properties of heterogeneous nanosystems based on montmorillonite clay mineral and 5CB nematic liquid crystal. Journal of Molecular Structure, 744-747, 563-571.
  28.  
  29. Bezrodna, T.; Chashechnikova, I.; Dolgov, L.; Puchkovska, G.; Shaydyuk, Ye.; Lebovka, N.; Moraru, V.; Baran, J.; Ratajczak, H. (2005). Effects of montmorillonite modification on optical properties of heterogeneous nematic liquid crystal – clay mineral nanocomposites. Liquid Crystals, 32(8), 1005-1012. pdf
  30.  
  31. L.O. Dolgov and O.V. Yaroshchuk, Light scattering liquid crystal composites with reduced off-axis haze. J.Soc.Inf.Display, 14/7, 657-662 (2006). pdf
  32.  
  33. O. Yaroshchuk, Yu. Piryatinski, L. Dolgov, D. Enke, Fluorencence of nematic liquid crystal 5CB in nanoporous glass, Optics and Spectroscopy, 100 (3), 444-450 (2006) [in Russian]; pdf 100 (3), 437-443 (2006) [in English]. pdf
  34.  
  35. O. Yaroshchuk, R. Kravchuk, L. Dolgov, A. Dobrovolskyy, A. Khokhlov, E. Khokhlov, E. Telesh, and O.Lavrentovich, Ion beam processes for liquid crystal alignment on large-area substrates. , Proc. of IDRC’06 (Kent, OH, USA, Sept., 2006), 375-378. pdf
  36.  
  37. N.I. Klyui, V.G. Litovchenko, A.N. Lukyanov, L.V. Neselevska, V.D. Osovskiy, O.V. Yaroshchuk, and L.A. Dolgov, Optical and mechanical properties of nitrogen-doped diamond-like carbon films. Ukr. J. Phys., 51 (7) 710-714 (2006). pdf
  38.  
  39. O.V. Yaroshchuk and L.O. Dolgov, Electro-optics and structure of polymer dispersed liquid crystals doped with nanoparticles of inorganic materials. Opt.Mater., 29, 1097-1102 (2007). pdf
  40.  
  41. L. Dolgov, O. Yaroshchuk, L. Qiu, SEM investigations of the polymer morphology in the liquid crystal-polymer composites with different polymer content. Mol.Cryst.Liq.Cryst., 468, 335-344 (2007). pdf
  42.  
  43. Yu. P. Piryatinski, L. O. Dolgov, O. V. Yaroshchuk, S. Lasorouk, Fluorescence of porous silicon filled with liquid crystal 5CB. Mol.Cryst.Liq.Cryst., 467, 195-202 (2007). pdf
  44.  
  45. L. O. Dolgov, O. V. Kovalchuk, O. V. Yaroshchuk, Coloring, structuring and photopolymerization in the composites “pre-polymer -TiO2 nanoparticles” under the action of electric field. Mol.Cryst.Liq.Cryst., 468, 299–308 (2007). pdf
  46.  
  47. L. Vretik, L. Paskal, V. Syromyatnikov, V. Zagniy, O. Savchuk, L. Dolgov, O. Yaroshchuk, C.-D. Lee, New Photoalignment Materials in LCD’s Development: Liquid Crystal Pretilt Angle Variations By Using Fluoroalkylmethacrylates. Mol.Cryst.Liq.Cryst., 468, 173–179 (2007). pdf
  48.  
  49. O. Yaroshchuk, R. Kravchuk, L. Dolgov, A. Dobrovolskyy, N. Klyui, E. Telesh, A. Khokhlov, J. Brill, N. Fruehauf, Aging of liquid crystal alignment on plasma beam treated substrates: choice of alignment materials and liquid crystals. Mol.Cryst.Liq.Cryst., 479, 111-120 (2007). pdf
  50.  
  51. L. Vretik, V. Syromiatnikov, V. Zagniy, L. Paskal’, O. Yaroshchuk, L. Dolgov, V. Kyrychenko, and C-D. Lee, Polymethacryloylarylmethacrylates: New concept of photoalignment materials for liquid crystals. Mol.Cryst.Liq.Cryst., 479, 121-134 (2007). pdf
  52.  
  53. O. Yaroshchuk, L. Dolgov, J. Ho, H.S. Kwok, V. Chigrinov, H. Takatsu and H. Hasebe, O Films with Variable Tilt of Optical Axis for Display Application. SID’07 Digest, pp. 641-644. pdf
  54.  
  55. O. Yaroshchuk, R. Kravchuk, L. Dolgov, A. Dobrovolskyy, I. Protsenko, A. Khokhlov, E. Khokhlov, and E. Telesh, Plasma Beam Equipment and Processes for Liquid CrystalAlignment on the Large-Area Substrates. Eurodisplay’07 Digest, pp.65-68.  pdf
  56.  
  57. Baran, J.; Dolgov, L.; Gavrilko, T.; Osinkina, L.; Puchkovska, G.; Ratajczak, H.; Shaydyuk, Y.; Hauser, A. (2007). Effect of clay surface modification on the structure and electro-optical properties of liquid crystal/clay nanocomposites. Philosophical Magazine 87 (28), 4273-4285.
  58.  
  59. P.P. Maksymyak, A.L. Negrych, L.O. Dolgov, O.V. Yaroshchuk, Phase correlation function of liquid crystal - Polymer composites, SPIE Proc., 7008, Article number 700813 (2008).
  60.  
  61. O.Yaroshchuk, L. Dolgov, J. Ho, H.-S. Kwok, V. Chigrinov, H. Takatsu, H. Hasebe, O films with adjustable tilt of optical axis for LCD compensation, J.Soc.Inf.Display, 16 (9), 993-998 (2008). 
  62.  
  63. L. Dolgov, O. Yaroshchuk and N. Lebovka. Effect of electro-optic memory in liquid crystals doped with carbon nanotubes. Mol. Cryst. Liq. Cryst., 496, 212-229 (2008). 
  64.  
  65. A. Koval’chuk, L. Dolgov, O. Yaroshchuk, Dielectric studies of dispersions of carbon nanotubes in liquid crystals 5CB, Semiconductor Physics, Quantum Electronics & Optoelectronics,  11 (4), P. 337-341, (2008). 
  66.  
  67. L. Dolgov, O. Yaroshchuk, N. Lebovka, Structure and electrooptic response of liquid crystal with negative dielectric anisotropy doped with carbon nanotubes. , Nanosystems, Nanomaterials, Nanotechnologies, 6 (2), pp. 625-633, 2008). [in Ukrainian] pdf
  68.  
  69. L. Dolgov, N. Lebovka, and O. Yaroshchuk, Effect of Electro-Optic Memory in Suspensions of Carbon Nanotubes in Liquid Crystal. Colloid. J., 71(5), 599-608 (2009) [Rus version ]; 71(5), 603-611 (2009) [Eng. version ].
  70.  
  71. P. Maksymyak, A. Negrych, L. Dolgov, and O. Yaroshchuk, Interference Investigations of Liquid Crystal-Polymer Composites Structure. Optica Applicata, 39(3), 571-578 (2009). 
  72.  
  73. Yu. Piryatinskii, L. Dolgov, O. Yaroshchuk, T. Gavrilko, and S. Lazorouk, Fluorescence Enhancement of Porous Silicon Saturated by Liquid Crystal, Opt. and. Spectroscopy, 108 (1), 75-84 (2010) [Rus. version]; 108 (1) 70-79 (2010) [Eng. version pdf].
  74.  
  75. L. Dolgov, S. Tomylko, T. Semikina, O. Koval’chuk and O. Yaroshchuk, Carbon nanotube doped liquid crystals: robust composites with a function of electro-optic memory. Diamond and Related Materials, 19, 567-572 (2010). pdf
  76.  
  77. S. Tomylko, L. Dolgov, T. Semikina, O. Yaroshchuk, Liquid Crystal-Carbon Nanotubes Composites with the Induced Chirality: The Way Towards Enhancement of Electro-Optic Memory. Mol. Cryst. Liq. Cryst., 527, 130–136 (2010). pdf
  78.  
  79. L. Dolgov, S. Tomylko, O. Koval’chuk, N. Lebovka and O. Yaroshchuk, Liquid crystal dispersions of carbon nanotubes: dielectric, electro-optical and structural peculiarities. In book “Carbon nanotubes”, Jose Mauricio Marulanda (Ed.)., ISBN: 978-953-307-054-4, (6), INTECH (2010). 
    Available from: http://sciyo.com/books/show/title/carbon-nanotubes.
  80.  

© 2008, LC&FF Group.
Design by Ruslan Kravchuk
display Інститут Фізики НАН України Національна Академія Наук УкраїниМіністерство освіти і науки УкраїниДержавний фонд фундаментальних досліджень