Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Naemura, Shohei
2000.
Liquid‐crystal‐material technologies for advanced display applications.
Journal of the Society for Information Display,
Vol. 8,
Issue. 1,
p.
5.
Derfel, Grzegorz
2009.
Numerical study of ionic current in dielectric liquid layer subjected to ac voltage.
Journal of Molecular Liquids,
Vol. 144,
Issue. 1-2,
p.
59.
Dalton, Larry R.
2010.
Encyclopedia of Polymer Science and Technology.
Dalton, Larry R.
2010.
Encyclopedia of Polymer Science and Technology.
Garbovskiy, Yuriy
2016.
The purification and contamination of liquid crystals by means of nanoparticles. The case of weakly ionized species.
Chemical Physics Letters,
Vol. 658,
Issue. ,
p.
331.
Garbovskiy, Yuriy
2017.
Ions and size effects in nanoparticle/liquid crystal colloids sandwiched between two substrates. The case of two types of fully ionized species.
Chemical Physics Letters,
Vol. 679,
Issue. ,
p.
77.
Garbovskiy, Yuriy
2017.
Ions in liquid crystals doped with nanoparticles: conventional and counterintuitive temperature effects.
Liquid Crystals,
Vol. 44,
Issue. 9,
p.
1402.
Garbovskiy, Yuriy
2017.
Nanoparticle enabled thermal control of ions in liquid crystals.
Liquid Crystals,
Vol. 44,
Issue. 6,
p.
948.
Garbovskiy, Yuriy
2018.
Nanoparticle-Enabled Ion Trapping and Ion Generation in Liquid Crystals.
Advances in Condensed Matter Physics,
Vol. 2018,
Issue. ,
p.
1.
Garbovskiy, Yuriy
2018.
Time-dependent electrical properties of liquid crystal cells: unravelling the origin of ion generation.
Liquid Crystals,
Vol. 45,
Issue. 10,
p.
1540.
Garbovskiy, Yuriy
2018.
Nanomaterials in Liquid Crystals as Ion-Generating and Ion-Capturing Objects.
Crystals,
Vol. 8,
Issue. 7,
p.
264.
Garbovskiy, Yuriy
2018.
Kinetics of Ion-Capturing/Ion-Releasing Processes in Liquid Crystal Devices Utilizing Contaminated Nanoparticles and Alignment Films.
Nanomaterials,
Vol. 8,
Issue. 2,
p.
59.
Garbovskiy, Yuriy
2018.
Ion-Generating and Ion-Capturing Nanomaterials in Liquid Crystals.
p.
1122.
Karaawi, A. R.
Gavrilyak, M. V.
Boronin, V. A.
Gavrilyak, A. M.
Kazachonok, J. V.
and
Podgornov, F. V.
2020.
Direct current electric conductivity of ferroelectric liquid crystals–gold nanoparticles dispersion measured with capacitive current technique.
Liquid Crystals,
Vol. 47,
Issue. 10,
p.
1507.
Prakash, Jai
Parveen, Ariba
Mishra, Yogendra Kumar
and
Kaushik, Ajeet
2020.
Nanotechnology-assisted liquid crystals-based biosensors: Towards fundamental to advanced applications.
Biosensors and Bioelectronics,
Vol. 168,
Issue. ,
p.
112562.
Varshney, Depanshu
Parveen, Ariba
and
Prakash, Jai
2022.
Effect of cobalt oxide nanoparticles on dielectric properties of a nematic liquid crystal material.
Journal of Dispersion Science and Technology,
Vol. 43,
Issue. 1,
p.
42.
Manhas, Nidhi
Adimule, Vinayak
Lakshminarayana, Parashuram
Keri, Rangappa
Kumar, Lalita S.
and
Bathula, Chinna
2023.
Utilization of Co2+ doped Eu2O3 nanostructures and their effect on the dielectric and photoisomerization of liquid crystals.
Physics of Fluids,
Vol. 35,
Issue. 10,
Kovalchuk, O. V.
Glushchenko, Anatoliy
and
Garbovskiy, Yuriy
2023.
Improving experimental procedures for assessing electrical properties of advanced liquid crystal materials.
Liquid Crystals,
Vol. 50,
Issue. 1,
p.
140.
Kovalchuk, Oleksandr V.
Kovalchuk, Tetiana M.
and
Garbovskiy, Yuriy
2023.
Eliminating Ambiguities in Electrical Measurements of Advanced Liquid Crystal Materials.
Crystals,
Vol. 13,
Issue. 7,
p.
1093.