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Liquid Crystals

Synthesis of Novel Ferroelectric Liquid Crystals Derived from L-tyrosine

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Pages 127-135 | Received 01 Dec 1997, Accepted 10 May 1998, Published online: 24 Sep 2006

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Read on this site (11)

C. Kavitha, N. Pongali Sathya Prabu & M. L. N. Madhu Mohan. (2013) Thermal Analysis of Supramolecular Hydrogen-Bonded Liquid Crystals Formed by Nonyloxy and Alkyl Benzoic Acids. Molecular Crystals and Liquid Crystals 574:1, pages 96-113.
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V.N. Vijayakumar, M.L. N. Madhu Mohan & T. Chitravel. (2012) Study of Field Induced Transition (FiT) and Analysis of Crystallization Kinetics in the Nematic Phase of an Interhydrogen Bonded Nanoliquid Crytsal. Journal of Dispersion Science and Technology 33:5, pages 623-630.
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V.N. Vijayakumar & M.L.N. Madhu Mohan. (2012) Optical modulation in nematic phase of halogen substituted hydrogen bonded liquid crystals. Phase Transitions 85:1-2, pages 113-130.
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V. N. Vijayakumar & M. L. N. Madhu Mohan. (2010) Double Hydrogen Bonded Liquid Crystals: A Study of Light Modulation and Field Induced Transition (FiT). Molecular Crystals and Liquid Crystals 517:1, pages 113-126.
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M.L. N.Madhu Mohan, P.A. Kumar & V.G. K. M. Pisipati. (2001) THERMAL, FERROELECTRIC AND DIELECTRIC STUDIES ON TWO DISTINCT STRUCTURAL ISOMERS: A FIELD INDUCED TRANSITION IN PSEUDO-NEMATIC PHASE. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 366:1, pages 431-455.
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PoluriA. Kumar & VenkataG. K. M. Pisipati. (2001) Synthesis of a Novel Antiferroelectric Liquid Crystal: Influence of Biphenyl Ester Linkages on Magnitude of Spontaneous Polarization. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 365:1, pages 161-170.
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P.A. Kumar & V.G. K. M. Pisipati. (2001) Design and Synthesis of a Novel Wing Shaped Achiral Antiferroelectric Liquid Crystal. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 365:1, pages 147-160.
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P. A. Kumar, M. L. N. Madhu Mohan & V. G. K. M. Pisipati. (2000) Evidence of re-entrant ferroelectric ordering in an achiral AFLC: a detailed study by spontaneous polarization. Liquid Crystals 27:11, pages 1533-1537.
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V.G.K.M. Pisipati, P.A. Kumar & M.L.N. Madhu Mohan. (2000) Design and Synthesis of Linear and Bow Shaped Ferroelectric Liquid Crystal Isomers Derived From L-Tyrosine. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 350:1, pages 141-149.
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M. L. N. Madhu Mohan & V. G. K. M. Pisipati. (1999) Spontaneous polarization, tilt angle and dielectric measurements on a ferroelectric liquid crystal. Liquid Crystals 26:11, pages 1609-1613.
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Articles from other publishers (8)

C. Kavitha & M.L.N. Madhu Mohan. (2012) Design, synthesis and characterization of a linear hydrogen bonded homologous series exhibiting reentrant smectic C ordering. Journal of Physics and Chemistry of Solids 73:10, pages 1203-1212.
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N. Pongali Sathya Prabu, V.N. Vijayakumar & M.L.N. Madhu Mohan. (2011) Thermal and dielectric studies of self-assembly systems formed by hydroquinone and alkyloxy benzoic acids. Physica B: Condensed Matter 406:5, pages 1106-1113.
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V.N. Vijayakumar & M.L.N. Madhu Mohan. (2010) Dispersion of multi walled carbon nanotubes in a hydrogen bonded liquid crystal. Physica B: Condensed Matter 405:21, pages 4418-4423.
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V.N. Vijayakumar & M.L.N. Madhu Mohan. (2010) A study of field induced transitions (FiT) in the nematic phase of an inter hydrogen bonded ferroelectric liquid crystal. Solid State Sciences 12:4, pages 482-489.
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V.N. Vijayakumar & M.L.N. Madhu Mohan. (2009) Double hydrogen bonded ferroelectric liquid crystals: A study of field induced transition (FiT). Solid State Communications 149:45-46, pages 2090-2097.
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M.L.N. Madhu Mohan, B. Arunachalam & C.R. Aravindh Sankar. (2008) Thermal and Electrical Characterization of a Ferro Electric Liquid Crystal. Metallurgical and Materials Transactions A 39:5, pages 1192-1195.
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M.L.N. Madhu Mohan. (2005) Characterisation of ferroelectric lithium ammonium sulphate binary systems. Materials Research Bulletin 40:5, pages 850-860.
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P. A. KumarV. G. K. M. Pisipati. (2000) Ambient Monocomponent Ferroelectric Liquid Crystals with a Wide Smectic‐C* Range (< –20 to ≤ 65 °C). Advanced Materials 12:21, pages 1617-1619.
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