首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Contribution of water droplets to defect array formation in water-in-cholesteric liquid crystal emulsions
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Contribution of water droplets to defect array formation in water-in-cholesteric liquid crystal emulsions

机译:胆甾醇型液晶乳液中水滴对缺陷阵列形成的贡献

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The quadrilateral defect array is spontaneously formed after termination of the shear to the cholesteric emulsions, which are composed of water, surfactants, and cholesteric liquid crystals. We have here investigated the motion of water droplets in cholesteric media during the formation process of the defect array by using the laser scanning confocal fluorescence microscopy. A small amount of water-soluble fluorescent probe, Safranin 0, was mixed in the cholesteric emulsions to detect the position of water droplets. After stopping the shear, the fluorescence intensity near glass surfaces increases rapidly, in contrast to the reduction in the midway between glass plates, which indicates that water droplets become preferably settled on the glass surface, not in the liquid-crystal medium. The spatial distribution of the droplets on the glass surface tends to be two-dimensionally uniform, independent of the period of the defect array and the cholesteric pitch. The condensation of water droplets onto the glass surface occurs only within 10 s after the shear, much more quickly than the formation of the defect array. On the basis of these experimental results, we discussed the effect of water droplets on the formation of the defect array, particularly focusing on the growth of the nuclei of point defects, which are initially produced on the glass plates by the homeotropic anchoring of the substrate surface. [References: 20]
机译:四边形缺陷阵列是在剪切终止于胆甾型乳液后自发形成的,胆甾型乳液由水,表面活性剂和胆甾型液晶组成。我们在这里通过使用激光扫描共聚焦荧光显微镜研究了缺陷阵列形成过程中胆甾型介质中水滴的运动。将少量的水溶性荧光探针Safranin 0与胆甾型乳剂混合,以检测水滴的位置。在停止剪切之后,与玻璃板之间的中途减少相反,玻璃表面附近的荧光强度迅速增加,这表明水滴优选地沉积在玻璃表面上,而不是在液晶介质中。玻璃表面上的液滴的空间分布趋向于二维均匀,而与缺陷阵列的周期和胆甾醇间距无关。水滴在玻璃表面上的凝结仅在剪切后10秒内发生,比缺陷阵列的形成要快得多。基于这些实验结果,我们讨论了水滴对缺陷阵列形成的影响,特别是关注点缺陷原子核的生长,这些缺陷最初是通过基板的垂直锚定在玻璃板上产生的表面。 [参考:20]

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