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首页> 外文期刊>Journal of Imaging Science and Technology >Microemulsion Based Ink-jet Ink: Properties and Performance
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Microemulsion Based Ink-jet Ink: Properties and Performance

机译:基于微乳液的喷墨油墨:性能与性能

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摘要

Oil-in-water microemulsions which contain a hydrophobic colorant were evaluated as water based ink jet inks. These microemulsion based ink jet inks are thermodynamically stable, have the features of dye based inks prior to printing, and the features of pigment based inks after printing. The microemulsion was prepared and printed, as described recently by Magdassi et al.(1,2) using the gemini-type surfactant, didodecyldiphenylether disulfonate, toluene, 1-propanol, water as the continuous phase and Nile Red or Sudan Ⅳ as the hydrophobic dye. Microemulsion average droplet size was measured by dynamic light scattering and found to be ~8 nm. We found by AFM imaging that the printed 20 - 60 μm droplets are composed of nanoparticles with average size of 130 nm. The printing process was evaluated by a fluorescence microscope, while images of the droplets were viewed as a function of time after impact with the substrate. It was found that the microemulsion droplets formed distorted spheres on ink jet paper, more perfectly shaped spheres on Forbo paper substrate and perfect round spheres on vinyl slides. When printed on glass, a 'bagel like' shape was obtained. The droplet size varied, depending on the surface energy of the substrate, being at least 20 μm for low energy surfaces and growing larger for higher energy substrates. It was noticed that the time scales for spreading on paper was less than tens of milliseconds accompanied and followed by fixation and drying of the droplets in less than 3 - 5 seconds.
机译:将包含疏水性着色剂的水包油型微乳状液评价为水基喷墨油墨。这些基于微乳液的喷墨油墨是热力学稳定的,具有在印刷之前基于染料的油墨的特征以及在印刷之后具有基于颜料的油墨的特征。如Magdassi等人(1,2)所述,使用双子型表面活性剂,十二烷基二苯醚二磺酸盐,甲苯,1-丙醇,水为连续相,尼罗红或苏丹Ⅳ为疏水性制备和印刷微乳液。染料。通过动态光散射测量微乳液的平均液滴尺寸,发现为〜8 nm。我们通过AFM成像发现,印刷的20至60μm液滴由平均尺寸为130 nm的纳米颗粒组成。通过荧光显微镜评估印刷过程,同时将液滴的图像视为与基材碰撞后时间的函数。发现微乳液液滴在喷墨纸上形成扭曲的球,在Forbo纸基材上形成更完美形状的球,在乙烯基载玻片上形成完美的圆形球。当在玻璃上印刷时,获得“百吉饼状”形状。液滴尺寸的变化取决于基材的表面能,对于低能表面至少为20μm,对于高能基材则更大。注意到在纸上铺展的时间尺度小于几十毫秒,伴随而来的是液滴的定影和干燥在不到3-5秒的时间内完成。

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