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Original Articles

Liquid crystalline properties of all symmetric p-phenylene and 2,5-thiophene pentamers

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Pages 389-396 | Received 25 Mar 2009, Published online: 17 Jun 2009

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Read on this site (6)

Xiaozhe Yang, Lingchao Mo, Minggang Hu, Jian Li, Juanli Li, Ran Chen & Zhongwei An. (2018) New isothiocyanato liquid crystals containing thieno[3,2-b]thiophene central core. Liquid Crystals 45:9, pages 1294-1302.
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Anna Kovářová, Michal Kohout, Jiří Svoboda & Vladimíra Novotná. (2014) New liquid crystal based on 2-phenylthiophene central core. Liquid Crystals 41:12, pages 1703-1718.
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Yuki Arakawa, Sungmin Kang, Shunpei Nakajima, Koichi Sakajiri, Susumu Kawauchi, Junji Watanabe & Gen-ichi Konishi. (2014) Synthesis of new wide nematic diaryl-diacetylenes containing thiophene-based heteromonocyclic and heterobicyclic structures, and their birefringence properties. Liquid Crystals 41:5, pages 642-651.
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M. Kesava Reddy, K. Subramanyam Reddy, B. V. N. Phani Kumar & T. Narasimhaswamy. (2014) Synthesis, Structural and Mesophase Characterization of Three Ring Based Thiophene Liquid Crystals. Molecular Crystals and Liquid Crystals 593:1, pages 1-24.
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EdwardT. Samulski. (2010) meta-Cybotaxis and nematic biaxiality. Liquid Crystals 37:6-7, pages 669-678.
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Articles from other publishers (12)

Roman S. Fedorenko, Alexey V. Kuevda, Vasiliy A. Trukhanov, Andrey Yu. Sosorev, Artem V. Bakirov, Artem I. Dorokhov, Nicolay M. Surin, Oleg V. Borshchev, Sergey A. Ponomarenko & Dmitry Yu. Paraschuk. (2022) Luminescent 2D single crystals of thiophene–phenylene co-oligomers for field-effect devices. Materials Chemistry Frontiers.
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Nabih M. Abdulnabi, Hadeel Q. A. Habeeb, Ivan H. R. Tomi & Hamed J. Jaffer. (2020) Synthesis and Characterization of Some Boomerang Imine‐Ester Mesogenic Materials Based on Thiophene Unit. ChemistrySelect 5:28, pages 8740-8744.
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Flora D. Tsourtou, Stavros D. Peroukidis & Vlasis G. Mavrantzas. (2019) Molecular dynamics simulation of α-unsubstituted oligo-thiophenes: dependence of their high-temperature liquid-crystalline phase behaviour on molecular length. Journal of Materials Chemistry C 7:32, pages 9984-9995.
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Flora D. Tsourtou, Stavros D. Peroukidis, Loukas D. Peristeras & Vlasis G. Mavrantzas. (2018) Monte Carlo Algorithm Based on Internal Bridging Moves for the Atomistic Simulation of Thiophene Oligomers and Polymers. Macromolecules 51:21, pages 8406-8423.
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Flora D. Tsourtou, Emmanuel N. Skountzos, Stavros D. Peroukidis & Vlasis G. Mavrantzas. (2018) Molecular simulation of the high temperature phase behaviour of α-unsubstituted sexithiophene. Soft Matter 14:41, pages 8253-8266.
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Tapas Ghosh & Matthias Lehmann. (2017) Recent advances in heterocycle-based metal-free calamitics. Journal of Materials Chemistry C 5:47, pages 12308-12337.
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Gabriele D'Avino, Luca Muccioli & Claudio Zannoni. (2015) From Chiral Islands to Smectic Layers: A Computational Journey Across Sexithiophene Morphologies on C 60 . Advanced Functional Materials 25:13, pages 1985-1995.
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Yuki Arakawa, Sungmin Kang, Junji Watanabe & Gen-ichi Konishi. (2015) Assembly of thioether-containing rod-like liquid crystalline materials assisted by hydrogen-bonding terminal carboxyl groups. RSC Advances 5:11, pages 8056-8062.
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Yoann Olivier, Luca Muccioli & Claudio Zannoni. (2014) Quinquephenyl: The Simplest Rigid-Rod-Like Nematic Liquid Crystal, or is it? An Atomistic Simulation. ChemPhysChem 15:7, pages 1345-1355.
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Stefan Kuiper, Ben Norder, Wolter F. Jager, Theo J. Dingemans, Jan van Turnhout & Stephen J. Picken. (2011) Elucidation of the Orientational Order and the Phase Diagram of p -Quinquephenyl . The Journal of Physical Chemistry B 115:6, pages 1416-1421.
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A. Pizzirusso, M. Savini, L. Muccioli & C. Zannoni. (2011) An atomistic simulation of the liquid-crystalline phases of sexithiophene. J. Mater. Chem. 21:1, pages 125-133.
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James C. Hindson, Burak Ulgut, Richard H. Friend, Neil C. Greenham, Ben Norder, Arek Kotlewski & Theo J. Dingemans. (2010) All-aromatic liquid crystal triphenylamine-based poly(azomethine)s as hole transport materials for opto-electronic applications. J. Mater. Chem. 20:5, pages 937-944.
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