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Optical Materials Express

Optical Materials Express

  • Editor: David Hagan
  • Vol. 4, Iss. 5 — May. 1, 2014
  • pp: 1088–1091

Feature issue introduction: optical materials for flat panel displays

Wei Lee, Jongwook Park, Vivek Subramanian, and Hideo Takezoe  »View Author Affiliations

Optical Materials Express, Vol. 4, Issue 5, pp. 1088-1091 (2014)

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This feature issue on “Optical Materials for Flat Panel Displays” of Optical Materials Express spotlights recent advances in optical materials for information display applications. It comprises 12 papers primarily on liquid-crystal and light-emitting materials and their devices. It is hoped that the present special theme issue encourages and stimulates further research endeavors into novel optical materials with improved optical or electro-optical properties, their mechanisms of operation, and their promoted device performance for potential flat-panel-display applications.

© 2014 Optical Society of America

OCIS Codes
(120.2040) Instrumentation, measurement, and metrology : Displays
(160.2540) Materials : Fluorescent and luminescent materials
(160.2750) Materials : Glass and other amorphous materials
(160.3710) Materials : Liquid crystals
(160.5470) Materials : Polymers
(230.3670) Optical devices : Light-emitting diodes

Original Manuscript: April 28, 2014
Published: May 1, 2014

Virtual Issues
Optical Materials for Flat Panel Displays (2013) Optical Materials Express

Wei Lee, Jongwook Park, Vivek Subramanian, and Hideo Takezoe, "Feature issue introduction: optical materials for flat panel displays," Opt. Mater. Express 4, 1088-1091 (2014)

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  1. S. Aya, A. Zep, K. Aihara, K. Ema, D. Pociecha, E. Gorecka, F. Araoka, K. Ishikawa, H. Takezoe, “Stable electro-optic response in wide-temperature blue phases realized in chiral asymmetric bent dimers [Invited],” Opt. Mater. Express 4(4), 662–671 (2014). [CrossRef]
  2. H. Yoshida, S. Yabu, H. Tone, Y. Kawata, H. Kikuchi, M. Ozaki, “Secondary electro-optic effect in liquid crystalline cholesteric blue phases,” Opt. Mater. Express 4(5), 960–968 (2014). [CrossRef]
  3. Y. Inoue, H. Yoshida, M. Ozaki, “Nematic liquid crystal nanocomposite with scattering-free, microsecond electro-optic response,” Opt. Mater. Express 4(5), 916–923 (2014). [CrossRef]
  4. V. S. Sutormin, M. N. Krakhalev, O. O. Prishchepa, W. Lee, V. Ya. Zyryanov, “Electro-optical response of an ionic-surfactant-doped nematic cell with homeoplanar–twisted configuration transition [Invited],” Opt. Mater. Express 4(4), 810–815 (2014). [CrossRef]
  5. O. Haba, D. Hiratsuka, T. Shiraiwa, N. Funakoshi, H. Awano, T. Koda, T. Takahashi, K. Yonetake, M. Kwak, Y. Momoi, N. Kim, S. Hong, D. Kang, Y. Choi, “Homeotropic orientation of nematic liquid crystals induced by dissolving polypropyleneimine dendrimer having peripheral mesogens,” Opt. Mater. Express 4(5), 934–943 (2014). [CrossRef]
  6. Y. Momoi, O. Sato, T. Koda, A. Nishioka, O. Haba, K. Yonetake, “Surface rheology of rubbed polyimide film in liquid crystal display,” Opt. Mater. Express 4(5), 1057–1066 (2014).
  7. H.-K. Ma, P.-C. Chien, M.-C. Tsai, H.-Y. Miao, J.-H. Liu, C.-Y. Huang, “Application of buckypaper for preserving cholesteric liquid crystal cells within a certain temperature range,” Opt. Mater. Express 4(4), 719–724 (2014). [CrossRef]
  8. H. Lee, Y. Park, B. Kim, J.-H. Lee, J. Park, “Highly efficient blue emitting materials based on indenopyrazine derivatives for OLEDs [Invited],” Opt. Mater. Express 4(5), 924–933 (2014). [CrossRef]
  9. J.-Y. Baek, Y. R. Cheon, H. Shin, J. Park, Y.-H. Kim, “New asymmetrical limb structured blueemitting material for OLED [Invited],” Opt. Mater. Express. 4(6),1151–1158(2014).
  10. S.-W. Feng, “Dependence of the dynamics of exciton transport, energy relaxation, and localization on dopant concentration in disordered C545T-doped Alq3 organic semiconductors,” Opt. Mater. Express 4(4), 798–809 (2014). [CrossRef]
  11. S. Qi, Y. Huang, T. Tsuboi, W. Huang, H. J. Seo, “Versatile luminescence of Eu2+,3+-activated fluorosilicate apatites M2Y3[SiO4]3F (M = Sr, Ba) suitable for white light emitting diodes,” Opt. Mater. Express 4(2), 396–402 (2014). [CrossRef]
  12. K. Damak, E. Yousef, S. AlFaify, C. Rüssel, R. Maâlej, “Raman, green and infrared emission cross-section of Er3+ doped TZPPN tellurite glass,” Opt. Mater. Express 4(4), 597–612 (2014). [CrossRef]
  13. Y. Inoue, H. Yoshida, H. Kubo, M. Ozaki, “Deformation-free, microsecond electro-optic tuning of liquid crystals,” Adv. Opt. Mater. 1(3), 256–263 (2013). [CrossRef]
  14. O. Haba, D. Hiratsuka, T. Shiraiwa, T. Koda, K. Yonetake, Y. Momoi, K. Furuta, “Synthesis and characterization of polypropyleneimine dendrimers having peripheral mesogenic groups: homeotropic orientation and mesogen structure,” Mol. Cryst. Liq. Cryst. (Phila. Pa.) 574(1), 84–95 (2013). [CrossRef]
  15. Y. Momoi, M. Kwak, D. Choi, Y. Choi, K. Jeong, T. Koda, O. Haba, K. Yonetake, “Polyimide-free LCD by dissolving dendrimers,” J. Soc. Inf. Disp. 20(9), 486–492 (2012). [CrossRef]
  16. Y. Momoi, K. Tamai, K. Furuta, T.-R. Lee, K.-J. Kim, C.-H. Oh, T. Koda, “Mechanism of image sticking after long-term AC field driving of IPS mode,” J. Soc. Inf. Disp. 18(2), 134–140 (2010). [CrossRef]

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