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Original Articles

Electrical properties of liquid crystal nano-colloids analysed from perspectives of the ionic purity of nano-dopants

Pages 648-653 | Received 25 Nov 2015, Accepted 13 Dec 2015, Published online: 12 Jan 2016

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Longin Lisetski, Leonid Bulavin & Nikolai Lebovka. (2023) Effects of Dispersed Carbon Nanotubes and Emerging Supramolecular Structures on Phase Transitions in Liquid Crystals: Physico-Chemical Aspects. Liquids 3:2, pages 246-277.
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Ayushi Rastogi, Archana Mishra, Fanindra Pati Pandey, Rajiv Manohar & Avanish Singh Parmar. (2022) Enhancing physical characteristics of thermotropic nematic liquid crystals by dispersing in various nanoparticles and their potential applications. Emergent Materials 6:1, pages 101-136.
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Ruicong Zhang, Zhibo Zhang, Jiecai Han, Lei Yang, Jiajun li, Zicheng Song, Tianyu Wang & Jiaqi Zhu. (2023) Advanced liquid crystal-based switchable optical devices for light protection applications: principles and strategies. Light: Science & Applications 12:1.
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Aysha Rani, Susanta Chakraborty & Aloka Sinha. (2021) Effect of CdSe/ZnS quantum dots doping on the ion transport behavior in nematic liquid crystal. Journal of Molecular Liquids 342, pages 117327.
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Yuriy Garbovskiy. (2021) Conventional and unconventional ionic phenomena in tunable soft materials made of liquid crystals and nanoparticles. Nano Express 2:1, pages 012004.
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Yuriy Garbovskiy. (2020) On the Analogy between Electrolytes and Ion-Generating Nanomaterials in Liquid Crystals. Nanomaterials 10:3, pages 403.
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Jai Prakash, Sidra Khan, Shikha Chauhan & A.M. Biradar. (2020) Metal oxide-nanoparticles and liquid crystal composites: A review of recent progress. Journal of Molecular Liquids 297, pages 112052.
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Yuriy Garbovskiy. (2018) Nanoparticle-Enabled Ion Trapping and Ion Generation in Liquid Crystals. Advances in Condensed Matter Physics 2018, pages 1-8.
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Yuriy Garbovskiy. (2018) Nanomaterials in Liquid Crystals as Ion-Generating and Ion-Capturing Objects. Crystals 8:7, pages 264.
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Yuriy Garbovskiy. (2018) Kinetics of Ion-Capturing/Ion-Releasing Processes in Liquid Crystal Devices Utilizing Contaminated Nanoparticles and Alignment Films. Nanomaterials 8:2, pages 59.
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F. V. Podgornov & W. Haase. (2018) Chiroptic response of ferroelectric liquid crystals triggered with localized surface plasmon resonance of achiral gold nanorods. Applied Physics Letters 112:2.
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Dmitrii Pavlovich Shcherbinin & Elena A Konshina. (2017) Impact of titanium dioxide nanoparticles on purification and contamination of nematic liquid crystals. Beilstein Journal of Nanotechnology 8, pages 2766-2770.
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Yuriy Garbovskiy & Anatoliy Glushchenko. (2017) Ferroelectric Nanoparticles in Liquid Crystals: Recent Progress and Current Challenges. Nanomaterials 7:11, pages 361.
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Yuriy Garbovskiy. (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 679, pages 77-85.
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Yuriy Garbovskiy. (2017) Ion capturing/ion releasing films and nanoparticles in liquid crystal devices. Applied Physics Letters 110:4.
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Elena A. Konshina & Dmitrii P. Shcherbinin. (2017) EFFECT OF GRANULAR SILVER FILMS MORPHOLOGY ON THE MOLECULES ORIENTATION AND ION CONTAMINATION OF NEMATIC LIQUID CRYSTAL. Bulletin of the Moscow State Regional University (Physics and Mathematics):4, pages 103-113.
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Yuriy Garbovskiy. (2016) The purification and contamination of liquid crystals by means of nanoparticles. The case of weakly ionized species. Chemical Physics Letters 658, pages 331-335.
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Yuriy Garbovskiy. (2016) Switching between purification and contamination regimes governed by the ionic purity of nanoparticles dispersed in liquid crystals. Applied Physics Letters 108:12.
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