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Original Articles

Liquid Crystalline Composite Based on a Clay Mineral

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Pages 91-103 | Received 08 Dec 1994, Accepted 08 Dec 1994, Published online: 04 Oct 2006

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Read on this site (8)

N. Lebovka, A. Goncharuk, T. Bezrodna, I. Chashechnikova & V. Nesprava. (2012) Microstructure and electrical conductivity of hybrid liquid crystalline composites including 5CB, carbon nanotubes and clay platelets. Liquid Crystals 39:5, pages 531-538.
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Y. Shaydyuk, G. Puchkovska, A. Goncharuk & N. Lebovka. (2011) Aggregation of clay platelets in nematic liquid crystal, 5CB: microstructure, electrical conductivity and rheological investigations. Liquid Crystals 38:2, pages 155-161.
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T. Bezrodna, I. Chashechnikova, V. Nesprava, G. Puchkovska, Ye. Shaydyuk, Yu. Boyko, J. Baran & M. Drozd. (2010) Structure peculiarities and optical properties of nanocomposite: 5CB liquid crystal–CTAB-modified montmorillonite clay. Liquid Crystals 37:3, pages 263-270.
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T. Bezrodna, I. Chashechnikova, T. Gavrilko, G. Puchkovska, Y. Shaydyuk, A. Tolochko, J. Baran & M. Drozd. (2008) Structure formation and its influence on thermodynamic and optical properties of montmorillonite organoclay–5CB liquid crystal nanocomposites. Liquid Crystals 35:3, pages 265-274.
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J. Baran, L. Dolgov, T. Gavrilko, L. Osinkina, G. Puchkovska, H. Ratajczak, Y. Shaydyuk & A. Hauser. (2007) Effect of clay surface modification on the structure and electro-optical properties of liquid crystal/clay nanocomposites. Philosophical Magazine 87:28, pages 4273-4285.
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T. Bezrodna, I. Chashechnikova, L. Dolgov, G. Puchkovska, Ye. Shaydyuk, N. Lebovka, V. Moraru, J. Baran & H. Ratajczak. (2005) Effects of montmorillonite modification on optical properties of heterogeneous nematic liquid crystal – clay mineral nanocomposites. Liquid Crystals 32:8, pages 1005-1012.
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Sandeep Kumar & Santanu Kumar Pal. (2005) The first examples of terminally thiol‐functionalized alkoxycyanobiphenyls. Liquid Crystals 32:5, pages 659-661.
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Masaya Kawasumi, Naoki Hasegawa, Arimitsu Usuki & Akane Okada. (1996) Novel memory effect found in nematic liquid crystal/fine particle system. Liquid Crystals 21:6, pages 769-776.
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Articles from other publishers (21)

T. V. Bezrodna, G. V. Klishevich, N. D. Curmei, V. I. Melnyk & V. V. Nesprava. (2017) The Effect of Inorganic Nanoparticles on the Luminescence Properties of the 5CB Liquid Crystal. Journal of Applied Spectroscopy 84:4, pages 560-566.
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Mehtap Ejder-Korucu, Ahmet Gürses & Semra Karaca. (2016) Poly(ethylene oxide)/clay nanaocomposites: Thermal and mechanical properties. Applied Surface Science 378, pages 1-7.
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Aravind Dasari, Zhong-Zhen Yu & Yiu-Wing MaiAravind Dasari, Zhong-Zhen Yu & Yiu-Wing Mai. 2016. Polymer Nanocomposites. Polymer Nanocomposites 227 261 .
Seyfullah Madakbaş, Zeynep Çelik, Fatih Dumludağ & Memet Vezir Kahraman. (2014) Preparation, characterization and electrical properties of polyacrylonitrile/huntite composites. Polymer Bulletin 71:6, pages 1471-1481.
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Yoldas Seki, Kutlay Sever, Mehmet Sarikanat, Ali Sakarya & Eren Elik. (2013) Effect of huntite mineral on mechanical, thermal and morphological properties of polyester matrix. Composites Part B: Engineering 45:1, pages 1534-1540.
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J.-F. Lambert & F. Bergaya. 2013. Handbook of Clay Science. Handbook of Clay Science 679 706 .
A. L. Rodarte, C. Gray, L. S. Hirst & S. Ghosh. (2012) Spectral and polarization modulation of quantum dot emission in a one-dimensional liquid crystal photonic cavity. Physical Review B 85:3.
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T. V. Bezrodna, G. V. Klishevich, V. I. Melnyk, V. V. Nesprava, G. A. Puchkovska & I. T. Chashechnikova. (2011) Photoluminescence of montmorillonite clay minerals modified by cetyltrimethylammonium bromide. Journal of Applied Spectroscopy 77:6, pages 784-789.
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Lucia Helena Innocentini‐Mei. 2010. Optimization of Polymer Nanocomposite Properties. Optimization of Polymer Nanocomposite Properties 351 368 .
Takashi TASAKI & Hideki GODA. (2010) Properties and Application of Coating Material of Site-selective Sol-gel Hybrid. Journal of The Adhesion Society of Japan 46:5, pages 178-186.
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Zexin Zhang & Jeroen S. van Duijneveldt. (2007) Effect of suspended clay particles on isotropic–nematic phase transition of liquid crystal. Soft Matter 3:5, pages 596-604.
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Akane Okada & Arimitsu Usuki. (2006) Twenty Years of Polymer-Clay Nanocomposites. Macromolecular Materials and Engineering 291:12, pages 1449-1476.
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D. Ratna, S. Divekar, A.B. Samui, B.C. Chakraborty & A.K. Banthia. (2006) Poly(ethylene oxide)/clay nanocomposite: Thermomechanical properties and morphology. Polymer 47:11, pages 4068-4074.
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T. A. Gavrilko, V. I. Mel’nik, V. N. Moraru, I. T. Chashechnikova, E. A. Shaidyuk & A. Hauser. (2005) Phosphorescence and phase structure of benzophenone—organomontmorillonite nanocomposites. Journal of Applied Spectroscopy 72:6, pages 887-892.
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I. Chashechnikova, L. Dolgov, T. Gavrilko, G. Puchkovska, Ye. Shaydyuk, N. Lebovka, V. Moraru, J. Baran & H. Ratajczak. (2005) Optical properties of heterogeneous nanosystems based on montmorillonite clay mineral and 5CB nematic liquid crystal. Journal of Molecular Structure 744-747, pages 563-571.
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Claire Pizzey, Susanne Klein, Edward Leach, Jeroen S van Duijneveldt & Robert M Richardson. (2004) Suspensions of colloidal plates in a nematic liquid crystal: a small angle x-ray scattering study. Journal of Physics: Condensed Matter 16:15, pages 2479-2495.
Crossref
David J. Chaiko. (2003) New Poly(ethylene oxide)−Clay Composites. Chemistry of Materials 15:5, pages 1105-1110.
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R.A. Vaia & E.P. Giannelis. (2001) Liquid crystal polymer nanocomposites: direct intercalation of thermotropic liquid crystalline polymers into layered silicates. Polymer 42:3, pages 1281-1285.
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A. Usuki. 2001. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 1233 1236 .
M Kawasumi. (1999) Liquid crystal/clay mineral composites. Applied Clay Science 15:1-2, pages 93-108.
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Masaya Kawasumi, Naoki Hasegawa, Arimitsu Usuki & Akane Okada. (1998) Nematic liquid crystal/clay mineral composites. Materials Science and Engineering: C 6:2-3, pages 135-143.
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