DocumentCode :
18594
Title :
The Frequency Modulation Electro-Optical Response of Holographic Polymer Dispersed Liquid Crystal Display Doped With Nano Ag
Author :
Jihong Zheng ; Kun Gui ; Menghua Zhang ; Kangni Wang ; Caihong Guo ; Songlin Zhuang
Author_Institution :
Eng. Res. Center of Opt. Instrum. & Syst., Univ. of Shanghai for Sci. & Technol., Shanghai, China
Volume :
10
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
215
Lastpage :
222
Abstract :
Holographic polymer dispersed liquid crystals (H-PDLCs), which is one of promising material for LC display, when doped with nanoscale silver (nano Ag) exhibit a unique electro-optical response to frequency modulation. We established an equivalent circuit model for H-PDLC doped nano Ag gratings according to Maxwell-Wagner effect and calculated relaxation frequency for three concentrations of nano Ag. We found that the frequency modulation and doping concentration have a close effect on threshold driving voltage of H-PDLC gratings. It is experimentally shown that the lowest threshold driving voltage can be obtained when the driving frequency is located just around the recipe´s dielectric relaxation frequency. It is possible to decrease the driving voltage of H-PDLC through selection of suitable driving frequency as well as via doping with appropriate concentration of nano Ag.
Keywords :
dielectric relaxation; diffraction gratings; electro-optical effects; equivalent circuits; frequency modulation; holographic displays; liquid crystal displays; nanophotonics; polymer dispersed liquid crystals; silver; Ag; Maxwell-Wagner effect; dielectric relaxation frequency; doping concentration; electro-optical response; equivalent circuit model; frequency modulation; holographic polymer dispersed liquid crystal display; nano Ag gratings; nanoscale silver; threshold driving voltage; Capacitance; Frequency modulation; Gratings; Nanoparticles; Polymers; Threshold voltage; Diffraction gratings; electro-optical material; equivalent circuit; liquid crystals display; nano Ag; polymer dispersed liquid crystal;
fLanguage :
English
Journal_Title :
Display Technology, Journal of
Publisher :
ieee
ISSN :
1551-319X
Type :
jour
DOI :
10.1109/JDT.2013.2294680
Filename :
6680638
Link To Document :
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