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Original Articles

Synthesis and Characterisation of Liquid Crystalline Polymers for Nonlinear Optical Applications

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Pages 157-165 | Received 01 Oct 1990, Published online: 04 Oct 2006

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Fan Guangyu, Zhao Xiaoguang & Zhou Enle. (1998) Synthesis and Characterization of Side-Chain Liquid Crystalline (M6MPP/M6NPAP) Copolymers with NLO Properties. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 318:1, pages 19-38.
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Ging-Ho Hsiue, Long-Hai Wu, Chang-Jyh Hsieh & Ru-Jong Jeng. (1995) Synthesis and thermal behaviour of non-linear optical materials. 1: Liquid crystals containing long conjugate and high polar terminal groups. Liquid Crystals 19:2, pages 189-195.
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Jean-Claude Dubois, Pierre Le Barny, Philippe Robin, Vincent Lemoine & Henri Rajbenbach. (1993) Properties of side chain liquid crystal and amorphous polymers. Applications to non-linear optics. Liquid Crystals 14:1, pages 197-213.
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Articles from other publishers (24)

Izabela Korbecka, Joanna Jaworska & Zbigniew Galewski. (2017) Novel fluorescent liquid crystal containing azobenzene and stilbene moieties-synthesis, mesogenic and spectroscopic studies. Dyes and Pigments 140, pages 166-168.
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M.S. Sureshkumar, R.K. Goyal, Y.S. Negi, A. Pratheepkumar, K. Raghunatha Reddy, R.P. Singh, J.W. Dadge & R.C. Aiyer. (2011) Studies on the feasibility of recycled polystyrene doped with NLO active meta -Nitroaniline for optoelectronics applications . Polymers for Advanced Technologies 22:12, pages 1865-1871.
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Qian Zhang & C. Geraldine Bazuin. (2009) Liquid Crystallinity and Other Properties in Complexes of Cationic Azo-Containing Surfactomesogens with Poly(styrenesulfonate). Macromolecules 42:13, pages 4775-4786.
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Ran Zhang & Haixiong Ge. (2008) A novel vinyl ether resin of poly(4-vinylphenol) derivative for lithographic resist. A novel vinyl ether resin of poly(4-vinylphenol) derivative for lithographic resist.
M.S. Sureshkumar, R.K. Goyal & Y.S. Negi. (2008) Potential Applications of Polystyrene in Optoelectronics. Progress in Rubber, Plastics and Recycling Technology 24:1, pages 53-71.
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Changli Zhao, Hiroaki Horiuchi, Tetsuo Okutsu, Seiji Tobita, Shoji Takigami & Hiroshi Hiratsuka. (2003) Photophysical and Photochemical Processes of Poly(methylphenylsilane) Functionalized with Pendant p -Nitroazobenzene Groups . Bulletin of the Chemical Society of Japan 76:5, pages 961-969.
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Toemsak Srikhirin, J. Adin Mann & Jerome B. Lando. (1999) Synthesis of side chain liquid crystalline copolymers and characterization of their polar structure. Journal of Polymer Science Part A: Polymer Chemistry 37:8, pages 1057-1070.
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Rong-Ho Lee, Ging-Ho Hsiue, Che-Kai Hsu, Jenn-Chiu Hwang & Ru-Jong Jeng. (1998) Thermal dynamics of side-chain copolymethacrylates as studied by the dielectric spectroscopy and relaxation of second-harmonic generation. Polymer 39:26, pages 6911-6920.
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D. Demus, J. Goodby, G. W. Gray, H.‐W. Spiess & V. VillJean‐Claude Dubois, Pierre Le Barny, Monique Mauzac & Claudine Noel. 1998. Handbook of Liquid Crystals. Handbook of Liquid Crystals 207 275 .
D. Demus, J. Goodby, G. W. Gray, H.‐W. Spiess & V. VillJean‐Claude Dubois, Pierre Le Barny, Monique Mauzac & Claudine Noel. 1998. Handbook of Liquid Crystals Set. Handbook of Liquid Crystals Set 207 275 .
D. Coates & M. Verrall. 1997. Specialty Polymers. Specialty Polymers 161 199 .
Claudine Noël, Gangadhara, Kathlen Chane Ching, Maryanne Large, Danièle Reyx & François Kajzar. (2003) Synthesis and characterization of polymers containing 4‐cyanobiphenyl‐based side groups for nonlinear optical applications, 3. Poly( p ‐chloromethylstyrene) derivatives . Macromolecular Chemistry and Physics 198:5, pages 1665-1678.
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J. C. Dubois, P. Le Barny, M. Mauzac & C. Noel. (2003) Behavior and properties of side chain thermotropic liquid crystal polymers. Acta Polymerica 48:3, pages 47-87.
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Takashi Kato, Hideyuki Kihara, Seiji Ujiie, Toshiyuki Uryu & Jean M. J. Fréchet. (1996) Structures and Properties of Supramolecular Liquid-Crystalline Side-Chain Polymers Built through Intermolecular Hydrogen Bonds. Macromolecules 29:27, pages 8734-8739.
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Nobukatsu Nemoto, Yu Nagase, Jiro Abe, Hiroshi Matsushima, Yasuo Shirai & Nobuo Takamiya. (2003) Orientational behavior of side‐chain liquid‐crystalline polysiloxanes deduced from measurements of second harmonic generation. Macromolecular Chemistry and Physics 196:7, pages 2237-2249.
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A. Zerroukhi, A. Trouillet, D. Blanc, B. Boinon, A. Cachard & J. P. Montheard. (2003) Syntheses and nonlinear optical properties of polymers prepared from chloromethylstyrene. Journal of Applied Polymer Science 51:7, pages 1165-1173.
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Manfred Eich. (2010) Nichtlineare Optik in Flüssigkristallen. Fortschrittsbericht. Berichte der Bunsengesellschaft für physikalische Chemie 97:10, pages 1261-1271.
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Yoshio Sugiyama, Yasushi Suzuki, Shuichi Mitamura & Tatsuo Nishiyama. (1993) Second-Order Optical Nonlinearities of Substituted Stilbenes and the Related Compounds Containing a Trifluoromethyl as the Electron-Withdrawing Group. Bulletin of the Chemical Society of Japan 66:3, pages 687-691.
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J.P. Monthéard, B. Boinon, A. Zerroukhi & A. Cachard. (1992) Preparation of polymeric non-linear optical materials from chloromethylstyrene. Polymer 33:17, pages 3756-3758.
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V. Vill. 1992. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group 200 224 .
V. Vill. 1992. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group 175 199 .
V. Vill. 1992. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group 74 99 .
V. Vill. 1992. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group 611 653 .
V. Vill. 1992. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group. Transition Temperatures and Related Properties of Two-Ring Systems with Bridging Group 250 274 .

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