研究目的
Investigating the electro-optical properties of liquid crystal/polymer microsphere composites for electrically controlled light-scattering devices.
研究成果
The LC/polymer microsphere composites exhibit low driving voltage, zero hysteresis, and stable properties, making them suitable for smart windows or window displays. The electro-optical properties can be regulated by changing the ratio, particle size, and refractive index of microspheres.
研究不足
The study focuses on the electro-optical properties of LC/polymer microsphere composites but does not address long-term stability or environmental effects on the device performance.
1:Experimental Design and Method Selection:
The study involves the fabrication of light-scattering devices using composites of liquid crystal (LC) and polymer microspheres. The devices are operated by a vertical electric field without requiring complex preparation processes.
2:Sample Selection and Data Sources:
Different kinds of polymer microspheres (PMSQ and PMMA) were doped into LC in different weight ratios to prepare various samples. The NLC used is E7, and the polymer microspheres are PMSQ microspheres with particle sizes of 2 μm and 5 μm, and PMMA microspheres with a particle size of 5 μm.
3:List of Experimental Equipment and Materials:
Materials include NLC E7, PMSQ microspheres, PMMA microspheres, ITO glasses, polyimide layer, and spacers. Equipment includes a magnetic stirrer, optical microscope, waveform generator (Rigol DG4062), voltage amplifier (Tegam 2350), optical fiber spectrometer, and halogen lamp.
4:Experimental Procedures and Operational Workflow:
Samples were prepared by stirring the mixture of LC and microspheres, filling into LC cells, and driving by a square wave voltage. Optical textures were observed, and electro-optic properties were measured.
5:Data Analysis Methods:
The transmittance was measured using an optical fiber spectrometer, and response times were calculated through an oscilloscope connected to a photoelectric detector.
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NLC E7
Jiangsu Hecheng Display Technology Co., Ltd
Used as the liquid crystal material in the composite.
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PMSQ microspheres
Used as the polymer microspheres in the composite.
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PMMA microspheres
Used as the polymer microspheres in the composite.
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Waveform Generator
Rigol DG4062
Rigol
Used to generate a square wave voltage for driving the samples.
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Voltage Amplifier
Tegam 2350
Tegam
Used to amplify the voltage for driving the samples.
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Optical Fiber Spectrometer
Used to measure the transmittance of the samples.
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Halogen Lamp
Used as the light source for the optical fiber spectrometer.
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