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 in | Molecules (Basel, Switzerland) Vol. 28; no. 8; p. 3509 |
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Main Authors | , , , , , , , , |
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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. |
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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 |
AuthorAffiliation_xml | – name: 1 Xi’an Key Laboratory of Advanced Photo-Electronics Materials and Energy Conversion Device, School of Electronic Information, Xijing University, Xi’an 710123, China – name: 2 Shandong Lanbeisite Educational Equipment Group Co., Ltd., Jinan 250100, China |
Author_xml | – sequence: 1 givenname: Yuzhen surname: Zhao fullname: Zhao, Yuzhen – sequence: 2 givenname: Chaonian surname: Li fullname: Li, Chaonian – sequence: 3 givenname: Tingting surname: Lang fullname: Lang, Tingting – sequence: 4 givenname: Yitian surname: Sun fullname: Sun, Yitian – sequence: 5 givenname: Qingbo surname: Li fullname: Li, Qingbo – sequence: 6 givenname: Xinli surname: Shi fullname: Shi, Xinli – sequence: 7 givenname: Ruijuan surname: Yao fullname: Yao, Ruijuan – sequence: 8 givenname: Huimin surname: Zhang fullname: Zhang, Huimin – sequence: 9 givenname: Yang surname: Zhao fullname: Zhao, Yang |
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Keywords | bistable cholesteric liquid crystal high contrast ratio organic fluorescent dyes brightening film |
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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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Title | Fluorescent Dye-Doped Brightening Polymer-Stabilized Bistable Cholesteric Liquid Crystal Films |
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