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Original Articles

A novel pre‐shearing technique for measurement of the electrorheological effect of a side‐chain liquid crystalline polysiloxane

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Pages 229-234 | Received 26 Jul 2005, Accepted 21 Apr 2006, Published online: 28 Feb 2007

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Read on this site (3)

T. Hanasaki, Y. Kamei, A. Mandai, K. Uno & K. Kaneko. (2011) The phase transition behaviour and electro-rheological effect of liquid crystalline siloxane dimers. Liquid Crystals 38:7, pages 841-848.
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Kosuke Kaneko, Atsuhiko Mandai, Yuichi Kamei, Yusuke Miwa & Naotake Nakamura. (2010) Electro-rheological effect of blends composed of two liquid crystalline materials: composition dependence. Liquid Crystals 37:5, pages 599-605.
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Kosuke Kaneko, Yusuke Miwa & Naotake Nakamura. (2007) Study on an Electrorheological Effect of Side-Chain Polysiloxanes Including Fluorine Atoms by the Preshearing Method. Molecular Crystals and Liquid Crystals 473:1, pages 43-55.
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Articles from other publishers (6)

Seiji Ujiie & Hiroshi Orihara. 2014. Handbook of Liquid Crystals. Handbook of Liquid Crystals 1 23 .
Kosuke KanekoKodai OtoToshiaki KawaiHyunseok ChoiHirotsugu KikuchiNaotake Nakamura. (2013) Electrorheological Effect and Electro‐Optical Properties of Side‐on Liquid Crystalline Polysiloxane in a Nematic Solvent. ChemPhysChem 14:12, pages 2704-2710.
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Kosuke Kaneko, Atsuhiko Mandai, Benoît HeinrichBertrand DonnioTomonori Hanasaki. (2010) Electric‐Field‐Induced Reversible Viscosity Change in a Columnar Liquid Crystal. ChemPhysChem 11:17, pages 3596-3598.
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Kosuke Kaneko, Toshiaki Kawai & Naotake Nakamura. (2008) Electrorheological Effect of “Side-on” Liquid Crystalline Polysiloxane. ChemPhysChem 9:17, pages 2457-2460.
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Wenqiang Xiao, Baoyan Zhang & Yuehua Cong. (2007) Preparation and characterization of side-chain liquid crystalline polymers containing chenodeoxycholic acid residue. Colloid and Polymer Science 286:3, pages 267-274.
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Kosuke Kaneko, Yusuke Miwa & Naotake Nakamura. (2007) Electro-rheological effect and dynamic rheological properties of a blend composed of two liquid crystalline materials with different molecular weight. Polymer 48:25, pages 7264-7270.
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