研究目的
Investigating the effects of molecular weight of side chain liquid crystalline polymers on the properties of liquid crystalline physical gels.
研究成果
The molecular weight of SCLCPs significantly affects the properties of LCPGs, including gelation ability, thermal stability, mechanical properties, and electro-optical response. LCPGs with higher molecular weight polymers exhibit better mechanical stability and electro-optical properties, but these properties plateau when the molecular weight exceeds a certain threshold. This provides a method to tailor LCPG properties for specific applications.
研究不足
The study focuses on the effects of molecular weight on LCPG properties but does not explore the potential for further optimization or the application of these gels in practical devices beyond display materials.
1:Experimental Design and Method Selection:
Synthesis of side chain liquid crystalline polymers (SCLCPs) with different molecular weights and their use as gelators to fabricate liquid crystalline physical gels (LCPGs).
2:Sample Selection and Data Sources:
Polymers were synthesized and characterized using NMR, GPC, TGA, and DSC. LCPGs were prepared by mixing gelators with 5CB.
3:List of Experimental Equipment and Materials:
Bruker ARX400 MHz spectrometer, PL-GPC 120 instrument, TGA Q600, TA Q10 DSC instrument, Leica DMLM-P microscope, JEOL JSM-6610 SEM, TA ARES rheometer, LCD parameter tester.
4:Experimental Procedures and Operational Workflow:
Polymers were synthesized via RAFT polymerization. LCPGs were prepared by heating mixtures of gelators and 5CB until transparent, then cooling. Properties were tested using various instruments.
5:Data Analysis Methods:
Data from GPC, TGA, DSC, rheological measurements, and electro-optical tests were analyzed to determine the effects of molecular weight on LCPG properties.
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Bruker ARX400 MHz spectrometer
ARX400
Bruker
Recording NMR spectra
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Leica DMLM-P microscope
DMLM-P
Leica
Observing liquid crystal properties
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JEOL JSM-6610 SEM
JSM-6610
JEOL
Observing microstructures of xerogels
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PL-GPC 120 instrument
PL-GPC 120
Recording number average molecular weight and polydispersity index
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TGA Q600
Q600
Testing decomposition temperature
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TA Q10 DSC instrument
Q10
Recording phase transition temperature
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TA ARES rheometer
ARES
Rheological measurements
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LCD parameter tester
LCT-5016C
North LC Engineering Research and Development Centre
Obtaining electro-optical properties
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