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Improved preparation technology of urea formaldehyde microcapsules used in electrophoretic display

机译:电泳显示器用脲醛微胶囊的改进制备技术

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Improved two step in-situ polymerization was applied in the preparation of urea- formaldehyde microcapsules used in microencapsulated electrophoretic display. The dispersion liquid which nano particles of titanium dioxide and carbon black dispersed in tetrachloroethylene was used as the electrophoretic liquid, and the electrophoresis microcapsules was prepared by urea-formaldehyde system. Melamine was used to modify the urea-formaldehyde microcapsules. The effect of different mole rates of urea and melamine to the surface morphology, mechanical strength, and sphericity of the microcapsules were studied. Electrophoretic performance of particles in melamine-urea-formaldehyde (MUF) microcapsules and urea-formaldehyde (UF) microcapsules were contrasted under the same condition. The results showed that as adding melamine in urea-formaldehyde, the time used to prepare microcapsules was shorter, and microcapsules were not easy aggregation during long time storage. When the mole rates of melamine and urea were from 2:8 to 5:5, the microcapsules with smoother surface (Fig.1), stronger mechanical strength and higher transmittance were obtained. Electrophoretic behaviors of particles in MUF (melamine and urea was 2:8 in mole rate) and UF microcapsules were tested under the same condition, respectively. It was shown that particles in MUF microcapsules could be seen significantly moving at the electric field of 10 V/mm, and the response time of these particles was 500 ms at the electric field of 20 V/mm,and it was shorter than 200 ms at the 50 V/mm electric field (Fig.2). On the contrast, the response time of particles in UF microcapsules was greater than 10 s at the electric field of 20 V/mm.
机译:改进的两步原位聚合用于制备微囊电泳显示器的脲醛微囊。使用将二氧化钛和炭黑的纳米粒子分散在四氯乙烯中的分散液作为电泳液,并通过脲醛系统制备电泳微囊。三聚氰胺用于修饰脲甲醛微胶囊。研究了不同摩尔比的尿素和三聚氰胺对微囊的表面形态,机械强度和球形度的影响。在相同条件下对比了三聚氰胺-脲-甲醛(MUF)微囊和尿素-甲醛(UF)微囊中颗粒的电泳性能。结果表明,由于在尿素-甲醛中添加三聚氰胺,制备微囊所需的时间较短,且长时间保存不易聚集。当三聚氰胺和尿素的摩尔比为2:8至5:5时,微胶囊表面更光滑(图1),机械强度更高,透射率更高。在相同条件下分别测试了MUF(三聚氰胺和尿素的摩尔比为2:8)和UF微胶囊中颗粒的电泳行为。结果表明,MUF微胶囊中的颗粒在10 V / mm的电场下明显移动,在20 V / mm的电场下这些颗粒的响应时间为500 ms,比200 ms短。在50 V / mm电场下(图2)。相比之下,在20 V / mm的电场下,UF微胶囊中颗粒的响应时间大于10 s。

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