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Original Articles

Molecular Reorientation in PDLC Films Monitored by 2H-NMR: Electric Field Induced Reorientation Mechanism and Optical Properties

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Pages 9-24 | Received 26 Jul 1990, Published online: 04 Oct 2006

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Cesare Chiccoli, Paolo Pasini, Gregor Skačej, Claudio Zannoni & Slobodan Žumer. (2001) Inhomogeneous Translational Diffusion in Polymer-Dispersed Liquid Crystals: Monte Carlo Simulations of NMR Spectra. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 367:1, pages 199-209.
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Ziqiang Huang, Giuseppe Chidichimo & Attilio Golemme. (1998) The Electric Field in Polymer Dispersed Liquid Crystal Droplets and its Influence on Molecular Orientation. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 312:1, pages 165-178.
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Luca Carpaneto, Annamaria Ristagno, Paola Stagnaro & Barbara Valenti. (1996) Polymer/Liquid Crystal Composites: Phase Separation and Morphology of Blends of PBMA or PMMA and E7. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 290:1, pages 213-226.
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Cesare Chiccoli, Paolo Pasini, Franco Semeria, Elisabet Berggren & Claudio Zannoni. (1995) Can Spin Models Reproduce or Predict Experimental Results in PDLC?. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 266:1, pages 241-262.
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Articles from other publishers (14)

Shri Singh, Jagdeesh Kumar Srivastava & Rajendra Kumar Singh. 2016. Liquid Crystalline Polymers. Liquid Crystalline Polymers 195 250 .
Cesare Chiccoli, Paolo Pasini, Gregor Skačej, Slobodan Žumer & Claudio Zannoni. 2005. Computer Simulations of Liquid Crystals and Polymers. Computer Simulations of Liquid Crystals and Polymers 1 25 .
Theo Rasing & Igor MuševičMarija Vilfan, Boštjan Zalar, Gregory P. Crawford, Daniele Finotello & Slobodan Žumer. 2004. Surfaces and Interfaces of Liquid Crystals. Surfaces and Interfaces of Liquid Crystals 17 40 .
Rohit Bhargava & Ira W. Levin. (2016) Time-Resolved Fourier Transform Infrared Spectroscopic Imaging. Applied Spectroscopy 57:4, pages 357-366.
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Rohit Bhargava & Ira W. Levin. (2002) Noninvasive Imaging of Molecular Dynamics in Heterogeneous Materials. Macromolecules 36:1, pages 92-96.
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C. Chiccoli, P. Pasini, G. Skačej, C. Zannoni & S. Žumer. (2000) Dynamical and field effects in polymer-dispersed liquid crystals: Monte Carlo simulations of NMR spectra. Physical Review E 62:3, pages 3766-3774.
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J. J. Castro, R. M. Valladares & A. Calles. (2011) Relaxation Method Simulation of Confined Polymer Dispersed Liquid Crystals in an External Field. MRS Proceedings 651.
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Paolo Pasini, Cesare Chiccoli & Claudio Zannoni. 2000. Advances in the Computer Simulatons of Liquid Crystals. Advances in the Computer Simulatons of Liquid Crystals 121 138 .
C. Chiccoli, P. Pasini, G. Skačej, C. Zannoni & S. Žumer. (1999) NMR spectra from Monte Carlo simulations of polymer dispersed liquid crystals. Physical Review E 60:4, pages 4219-4225.
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E. Berggren, C. Zannoni, C. Chiccoli, P. Pasini & F. Semeria. (1994) Computer simulations of nematic droplets with bipolar boundary conditions. Physical Review E 50:4, pages 2929-2939.
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E. Berggren, C. Zannoni, C. Chiccoli, P. Pasini & F. Semeria. (1994) Monte Carlo study of the effect of an applied field on the molecular organization of polymer-dispersed liquid-crystal droplets. Physical Review E 49:1, pages 614-622.
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G. L. Hoatson & R. L. Vold. 1994. Solid-State NMR III Organic Matter. Solid-State NMR III Organic Matter 1 67 .
Sachiko KohriJunji KobayashiShin TahataShuichi KitaIsamu KarinoTohru Yokoyama. (2016) Molecular Orientation in Polymer-Dispersed Liquid Crystals Using Time-Resolved FT-IR. Applied Spectroscopy 47:9, pages 1367-1369.
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E. Berggren, C. Zannoni, C. Chiccoli, P. Pasini & F. Semeria. (1992) Monte Carlo study of the molecular organization in model nematic droplets. Field effects. Chemical Physics Letters 197:3, pages 224-230.
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