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Original Articles

Ferroelectricity of induced S*C phases with novel chiral dopants

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Pages 1007-1019 | Published online: 24 Sep 2006

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VladimirF. Petrov & VladimirI. Yashkichev. (2010) Liquid-Crystalline Oxygen-Containing Heterocyclic Derivatives. 2 Six-Membered Rings Containing Oxygen as Structural Fragments in Liquid Crystals. Molecular Crystals and Liquid Crystals 518:1, pages 12-39.
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Purak Das, Achintesh Narayan Biswas, Amitava Choudhury, Pinaki Bandyopadhyay, Sripada Haldar, Pradip Kumar Mandal & Shailesh Upreti. (2008) Novel synthetic route to liquid crystalline 4,4′‐bis(n‐alkoxy)azoxybenzenes: spectral characterisation, mesogenic behaviour and crystal structure of two new members. Liquid Crystals 35:5, pages 541-548.
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Z. Raszewski, J. Kedzierski, P. Perkowski, J. Rutkowska, W. Piecek, J. Zieliński, J. Zmija & R. Dąabrowski. (1999) Influence of Quadrupolar Ordering Factor on Supermolecular Structure in Ferroelectric Sm C*. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 328:1, pages 255-263.
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J. Rutkowska, P. Perkowski, Z. Raszewski, J. Kedzierski, R. Dabrowski & W. Drzewiński. (1998) Influence of dopant structure on material properties in induced smectic C* phases. Ferroelectrics 212:1, pages 365-372.
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Z. Raszewski, J. Rutkowska, J. Kędzierski, P. Perkowski, W. Piecek, J. Zieliński, J. Żmija & R. Dąbrowski. (1997) Investigation of The Biased Rotation of Chiral Molecule Around its Long Molecular Axis in the Ferroelectric Liquid Crystal Mixture. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 302:1, pages 85-91.
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Witold Drzewiński, Roman Dabrowski, Zbigniew Raszewski, Jolanta Rutkowska, MaryE. Neubert & SandraS. East. (1997) Infulence of Dopant Structure on the Ability of Enhancing Sc Phase. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 301:1, pages 195-201.
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Volkmar Vill, Hanns-Walter Tunger & Angela Borwitzky. (1996) Ferroelectric liquid crystals based on carbohydrates. Ferroelectrics 180:1, pages 227-231.
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Z. Raszewski, J. Rutkowska, J. Kedzierski, P. Perkowski, W. Piecek, J. Zieliński, J. Zmija & R. Dabrowski. (1995) Determination of the Hindered Rotation Degree of Chiral Molecules Around Their Long Molecular Axes in the Sc* Phase of 4-(2‘-Methylbutyl)-4‘-n-Octylbiphenyl-4-Carboxylate. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 263:1, pages 271-283.
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H. Stegemeyer, A. Sprick, W. Kreiser & A. Weber. (1995) Relations Between Structure and Material Properties in Ferroelectric Smectic C* Phases. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 263:1, pages 1-11.
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B. Kutnjak-urbanc & B. Žekš. (1995) Microscopic origin of spontaneous polarization in ferroelectric SC∗ liquid crystals. Liquid Crystals 18:3, pages 483-488.
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Kexin Yang & RobertP. Lemieux. (1995) Synthesis and Characterization of C2-Symmetric Biphenyls as Novel Dopants for Induced Ferroelectric Liquid Crystal Phases. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 260:1, pages 247-253.
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S. Wróbel, S. Hiller, M. Pfeiffer, M. Marzec, W. Haase, R. Twieg & K. Betterton. (1995) Collective and molecular processes in a new class of ferroelectric liquid crystals. Liquid Crystals 18:1, pages 21-29.
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Articles from other publishers (11)

E. P. Pozhidaev, S. I. Torgova, V. A. Barbashov, M. V. Minchenko, S. N. Sulyanov, P. V. Dorovatovskii, B. I. Ostrovskii & A. Strigazzi. (2015) Ferroelectric C* phase induced in a nematic liquid crystal matrix by a chiral non-mesogenic dopant. Applied Physics Letters 106:6.
Crossref
Sven T. Lagerwall. 2014. Handbook of Liquid Crystals. Handbook of Liquid Crystals 1 258 .
Volkmar Vill. 2001. Chirality in Liquid Crystals. Chirality in Liquid Crystals 101 114 .
Sven T. Lagerwall. 1999. Ferroelectric and Antiferroelectric Liquid Crystals. Ferroelectric and Antiferroelectric Liquid Crystals 405 415 .
M. A. Osipov, H. Stegemeyer & A. Sprick. (1996) Molecular origin of ferroelectricity in induced smectic- liquid crystalline phases . Physical Review E 54:6, pages 6387-6403.
Crossref
H. Stegemeyer, A. Sprick, M. A. Osipov, V. Vill & H.-W. Tunger. (1995) Sign inversion of the spontaneous polarization in induced liquid crystalline smectic- phases . Physical Review E 51:6, pages 5721-5724.
Crossref
Volkmar Vill & Hanns‐Walter Tunger. (2006) Liquid crystals derived from carbohydrates: Synthesis and properties of oxadecaline compounds. Liebigs Annalen 1995:6, pages 1055-1059.
Crossref
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 125 149 .
V. Vill. 1995. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings. Transition Temperatures and Related Properties of Four-Ring Systems, Five-Ring Systems, and More than Five Rings 571 589 .
Seiji Ujiie & Kazuyoshi Iimura. (1994) Ion Complex Type of Novel Chiral Smectic C * Liquid Crystal Having Chiral Hydrogentartrate Counterion . Chemistry Letters 23:1, pages 17-20.
Crossref
V. Vill. 1994. Transition Temperatures and Related Properties of Three-Ring Systems with One Bridging Group. Transition Temperatures and Related Properties of Three-Ring Systems with One Bridging Group 498 527 .

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