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Phase transitions, optical, dielectric and viscoelastic properties of colloidal suspensions of BaTiO<sub>3</sub>nanoparticles and cyanobiphenyl liquid crystals
37
Citations
43
References
2015
Year
Materials ScienceColloid ChemistryPhase TransitionsColloidal MaterialEngineeringNanomaterialsLiquid Crystalline ElastomerColloidal PropertyCyanobiphenyl Liquid CrystalsRheologyInterfacial PhenomenaColloidal SystemsChemistrySoft MatterHybrid MaterialsBatio3 NanoparticlesColloidal SystemColloidal Suspensions
We report experimental studies on the phase transitions and physical properties of colloidal suspensions of BaTiO3 nanoparticles and two cyanobiphenyl liquid crystals (4-pentyl-4ʹ-cyanobiphenyl and 4-octyl-4ʹ-cyanobiphenyl). From the differential scanning calorimetric measurements, we show that the nanoparticles have antagonistic effect on the isotropic to nematic and nematic to smectic-A phase transitions. The birefringence, dielectric anisotropy and splay elastic constant remain almost unchanged, whereas the bend elastic constant and rotational viscosity decrease considerably. The experimental results are discussed based on the possible contribution of BaTiO3 nanoparticles and free surfactant molecules in the suspensions.
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