Fluorescent Dye-Doped Brightening Polymer-Stabilized Bistable Cholesteric Liquid Crystal Films

Brightening polymer-stabilized bistable cholesteric liquid crystal (PSBCLC) films with doped fluorescent dyes were prepared using the polymerization-induced phase separation (PIPS) method. The transmittance performance behavior of these films in both states (focal conic and planar) and absorbance ch...

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Published inMolecules (Basel, Switzerland) Vol. 28; no. 8; p. 3509
Main Authors Zhao, Yuzhen, Li, Chaonian, Lang, Tingting, Sun, Yitian, Li, Qingbo, Shi, Xinli, Yao, Ruijuan, Zhang, Huimin, Zhao, Yang
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 01.04.2023
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Abstract Brightening polymer-stabilized bistable cholesteric liquid crystal (PSBCLC) films with doped fluorescent dyes were prepared using the polymerization-induced phase separation (PIPS) method. The transmittance performance behavior of these films in both states (focal conic and planar) and absorbance change in multiple dye concentrations were studied using a UV/VIS/NIR spectrophotometer. The change occurring in dye dispersion morphology with different concentrations was obtained by means of the polarizing optical microscope. The maximum fluorescence intensity of different dye-doped PSBCLC films was measured using a fluorescence spectrophotometer. Moreover, the contrast ratios and driving voltages of these films were calculated and recorded to demonstrate film performance. Finally, the optimal concentration of dye-doped PSBCLC films with a high contrast ratio and a relatively low drive voltage was found. This is expected to have great potential applications in cholesteric liquid crystal reflective displays.
AbstractList Brightening polymer-stabilized bistable cholesteric liquid crystal (PSBCLC) films with doped fluorescent dyes were prepared using the polymerization-induced phase separation (PIPS) method. The transmittance performance behavior of these films in both states (focal conic and planar) and absorbance change in multiple dye concentrations were studied using a UV/VIS/NIR spectrophotometer. The change occurring in dye dispersion morphology with different concentrations was obtained by means of the polarizing optical microscope. The maximum fluorescence intensity of different dye-doped PSBCLC films was measured using a fluorescence spectrophotometer. Moreover, the contrast ratios and driving voltages of these films were calculated and recorded to demonstrate film performance. Finally, the optimal concentration of dye-doped PSBCLC films with a high contrast ratio and a relatively low drive voltage was found. This is expected to have great potential applications in cholesteric liquid crystal reflective displays.
Brightening polymer-stabilized bistable cholesteric liquid crystal (PSBCLC) films with doped fluorescent dyes were prepared using the polymerization-induced phase separation (PIPS) method. The transmittance performance behavior of these films in both states (focal conic and planar) and absorbance change in multiple dye concentrations were studied using a UV/VIS/NIR spectrophotometer. The change occurring in dye dispersion morphology with different concentrations was obtained by means of the polarizing optical microscope. The maximum fluorescence intensity of different dye-doped PSBCLC films was measured using a fluorescence spectrophotometer. Moreover, the contrast ratios and driving voltages of these films were calculated and recorded to demonstrate film performance. Finally, the optimal concentration of dye-doped PSBCLC films with a high contrast ratio and a relatively low drive voltage was found. This is expected to have great potential applications in cholesteric liquid crystal reflective displays.Brightening polymer-stabilized bistable cholesteric liquid crystal (PSBCLC) films with doped fluorescent dyes were prepared using the polymerization-induced phase separation (PIPS) method. The transmittance performance behavior of these films in both states (focal conic and planar) and absorbance change in multiple dye concentrations were studied using a UV/VIS/NIR spectrophotometer. The change occurring in dye dispersion morphology with different concentrations was obtained by means of the polarizing optical microscope. The maximum fluorescence intensity of different dye-doped PSBCLC films was measured using a fluorescence spectrophotometer. Moreover, the contrast ratios and driving voltages of these films were calculated and recorded to demonstrate film performance. Finally, the optimal concentration of dye-doped PSBCLC films with a high contrast ratio and a relatively low drive voltage was found. This is expected to have great potential applications in cholesteric liquid crystal reflective displays.
Audience Academic
Author Li, Qingbo
Zhang, Huimin
Zhao, Yuzhen
Sun, Yitian
Lang, Tingting
Zhao, Yang
Li, Chaonian
Yao, Ruijuan
Shi, Xinli
AuthorAffiliation 2 Shandong Lanbeisite Educational Equipment Group Co., Ltd., Jinan 250100, China
1 Xi’an Key Laboratory of Advanced Photo-Electronics Materials and Energy Conversion Device, School of Electronic Information, Xijing University, Xi’an 710123, China
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Issue 8
Keywords bistable cholesteric liquid crystal
high contrast ratio
organic fluorescent dyes
brightening film
Language English
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  start-page: 497
  year: 2021
  ident: ref_29
  article-title: Electro-optical performance investigation of cholesteric liquid crystal containing azo dye: Light shutter device application
  publication-title: J. Electron. Mater.
  doi: 10.1007/s11664-020-08570-4
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Snippet Brightening polymer-stabilized bistable cholesteric liquid crystal (PSBCLC) films with doped fluorescent dyes were prepared using the polymerization-induced...
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SubjectTerms bistable cholesteric liquid crystal
brightening film
Dielectric properties
Dyes
Energy consumption
Fluorescence
high contrast ratio
LCDs
Light
Liquid crystal displays
Morphology
Optical properties
organic fluorescent dyes
Polymer industry
Polymerization
Polymers
Ratios
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  providerName: ProQuest
Title Fluorescent Dye-Doped Brightening Polymer-Stabilized Bistable Cholesteric Liquid Crystal Films
URI https://www.ncbi.nlm.nih.gov/pubmed/37110743
https://www.proquest.com/docview/2806593267
https://www.proquest.com/docview/2807920717
https://pubmed.ncbi.nlm.nih.gov/PMC10144587
https://doaj.org/article/4bfc92a8def649f18e4ce86915c42f7f
Volume 28
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