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Dielectric relaxation studies and electro-optical measurements in poly(triethylene glycol dimethacrylate)/nematic E7 composites exhibiting an anchoring breaking transition

机译:表现出锚固断裂转变的聚三甲基丙烯酸二乙二醇酯/向列型E7复合材料的介电弛豫研究和电光测量

摘要

Electric field driven anchoring breakage in poly(triethylene glycol dimethacrylate)/nematic E7 composites was studied using dielectric spectroscopy and transmittance measurements. The transmittance hysteresis observed on increasing and decreasing an applied electric field, associated with different alignment states of the liquid crystal (LC), was monitored through dielectric loss. Essential changes are felt mainly in the δ-peak, i.e. the dielectric response of the nematic when the director lies parallel to the applied electric field. An irreversible effect persists after the field had exceeded a critical value, which was manifest in a higher transmittance and a higher dielectric strength of the δ-peak in the OFF state. The initial scattering/opaque state of the sample can only be recovered by heating to the clearing temperature of the nematic LC. The effect referred, commonly called memory effect, is rationalized in terms of anchoring breakage of the LC at the polymer-LC interfaces. The electro-optical response was tested for different poly(triethylene glycol dimethacrylate)/nematic E7 composites in different composition ratios prepared by polymerisation-induced phase separation. The lowest threshold field was observed for the 30:70 composite
机译:使用介电谱和透射率测量研究了聚(三甲基丙烯酸二乙二醇酯)/向列型E7复合材料中电场驱动的锚固断裂。通过介电损耗监视与液晶(LC)的不同取向状态相关联的,在增大和减小施加的电场时观察到的透射率滞后。基本变化主要在δ峰中感受到,即指向矢平行于外加电场时向列的介电响应。在电场超过临界值后,不可逆效应将继续存在,这表现为处于OFF状态的δ峰具有更高的透射率和更高的介电强度。样品的初始散射/不透明状态只能通过加热到向列LC的清除温度来恢复。所谓的效应,通常称为记忆效应,是根据LC在聚合物-LC界面处的锚固破坏而合理化的。测试了通过聚合诱导的相分离制备的不同组成比的不同聚(三乙二醇二甲基丙烯酸三乙酯)/向列型E7复合材料的电光响应。观察到30:70复合材料的最低阈值场

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