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electrophoretic particle
相关语句
  电泳颗粒
     Status and Development of Preparation and Surface Modification Methods for Electrophoretic Particle Used in Electronic Ink Displays
     电子墨水显示器用电泳颗粒制备和表面改性的研究进展
短句来源
     Electrophoretic particle is very important to the contrast and response time of electronic ink displays.
     电泳颗粒性能对电子墨水显示器的对比度、响应时间有重要的影响。
短句来源
     In this paper, the chassification and preparation of electrophoretic particles, such as inorganic particle (TiO2, SiO2,C), white polymer particle, dyestuff powder and dyestuff microcapsules, surface modification for increasing surface charge and minishing gravity of electrophoretic particle are discussed. The development of electrophoretic particle is summarized.
     综述了以无机颗粒(TiO2、SiO2、碳黑等)、白色聚合物颗粒、粉状染料颗粒、染料微胶囊颗粒作为电子墨水电泳颗粒的制备方法,提高表面荷电量以及降低颗粒密度的表面改性方法,并展望了其未来的发展。
短句来源
  “electrophoretic particle”译为未确定词的双语例句
     The xylene tetrachloroethylene benzidin yellow dispersed colloid is washed by water under the pH value of 7,3 and 11.Then the zeta potential,electrophoretic particle dimension and optic electro displaying characteristics of the washed samples are tested.
     使用酸性、碱性和中性水洗涤有机颜料电泳液 ,并测试zeta电位、粒度分布以及电泳显示性能的变化 ,发现了不同pH值水洗时 ,酸性水对四氯乙烯二甲苯混合溶液联苯胺黄颜料电泳液的影响最大 ,碱性水没有不良影响 ,中性水基本没有影响。
短句来源
  相似匹配句对
     Electrophoretic Painting
     电泳着色
短句来源
     particle irradiation.
     α粒子照射细胞诱发的基因突变存在旁效应;
短句来源
     The Energy of the H-particle
     H粒子的能量
短句来源
     Electrophoretic particle is very important to the contrast and response time of electronic ink displays.
     电泳颗粒性能对电子墨水显示器的对比度、响应时间有重要的影响。
短句来源
     Progress in Electrophoretic Display
     电泳显示材料及技术的研究进展
短句来源
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  electrophoretic particle
Turnip yellow mosaic virus has been purified by electrophoretic "particle-sieving" in a polyacrylamide gel.
      
Synthesis and characteristics of microcapsules containing electrophoretic particle suspensions
      
Therefore, it is difficult task to evaluate the contribution of electrophoretic particle motion into the codeposition process.
      
In the near-cathode region, the cathode itself affects ambiguosly the electrophoretic particle motion.
      


Encapsulated electrophoretic ink (E ink) is a novel flexible display material, which is made up of several different phases of materials with chemical compatibility. This paper introduces the display mechanism of E ink. The functions and characters of each constituent, such as electrophoretic particles, fluid, dyes, charge control agents and particle stabilizers, were reviewed. The procedures for microencapsulation were described as well. Finally, the recent development and some problems on...

Encapsulated electrophoretic ink (E ink) is a novel flexible display material, which is made up of several different phases of materials with chemical compatibility. This paper introduces the display mechanism of E ink. The functions and characters of each constituent, such as electrophoretic particles, fluid, dyes, charge control agents and particle stabilizers, were reviewed. The procedures for microencapsulation were described as well. Finally, the recent development and some problems on E ink display were briefly proposed.

 电子墨水是一种新型的柔性显示材料,是由具有化学相容性的多相材料组成的。本文在介绍电子墨水显示原理的基础上,着重介绍了各组成部分,即电泳颗粒、分散介质、染料、电荷控制剂和稳定剂的作用及材料的选择,论述了电子墨水微胶囊的制备方法及存在的问题,并评述了电子墨水的研究进展。

Many display technologies applied in electronic paper are disturbed by the shortage of instability and short life-span. Based on the latest reports and our experiments, the microcapsule process and its improvements are described in this paper. Such as the in-situ polymerization, the agglomeration polymerization, the polish up of microcapsule surface with polymerization inhibitor and the capsule dispersion improved by couple-preventing agents. The encapsulating of electrophoretic particles includes organic,...

Many display technologies applied in electronic paper are disturbed by the shortage of instability and short life-span. Based on the latest reports and our experiments, the microcapsule process and its improvements are described in this paper. Such as the in-situ polymerization, the agglomeration polymerization, the polish up of microcapsule surface with polymerization inhibitor and the capsule dispersion improved by couple-preventing agents. The encapsulating of electrophoretic particles includes organic, inorganic and nano particles. The properties of electronic paper that based on the elctrophoretic display, LCD, gyricon and magnetic display were improved effectively by the application of microcapsule. The industrialization of electronic paper was promoted by the microcapsule technology greatly.

 电泳显示、LCD等信息显示技术,应用于电子纸产品,存在性能不稳、产品寿命短等问题。本文综述了复凝聚、原位聚合等微胶囊合成方法及其改进技术,包括使用阻聚剂提高胶囊平滑度、加入抗冲击剂改善胶囊分散状态以及无机颜料、有机颜料和纳米SiO2等电泳颗粒的微胶囊改性技术,展示了电泳墨水微胶囊技术的新进展。微胶囊技术应用于电泳显示、LCD以及双色球和磁性电子纸等,改善了电子纸显示器性能,促进了电子纸及其应用技术产业化发展。

The influences of minimum water to nonpolar medium dispersion system,especially to inorganic pigment system is studied deeply.But the study of nonpolar medium organic pigment system is not so sufficient.The xylene tetrachloroethylene benzidin yellow dispersed colloid is washed by water under the pH value of 7,3 and 11.Then the zeta potential,electrophoretic particle dimension and optic electro displaying characteristics of the washed samples are tested.It is found that the property of electrophoretic...

The influences of minimum water to nonpolar medium dispersion system,especially to inorganic pigment system is studied deeply.But the study of nonpolar medium organic pigment system is not so sufficient.The xylene tetrachloroethylene benzidin yellow dispersed colloid is washed by water under the pH value of 7,3 and 11.Then the zeta potential,electrophoretic particle dimension and optic electro displaying characteristics of the washed samples are tested.It is found that the property of electrophoretic liquid is impacted greatly by acid,improved by base in some degree and almost no impact to pure water.

微量水对非极性介质分散体系的影响 ,特别是无机颜料体系的影响 ,曾经得到深入研究 ,但水对非极性有机颜料电泳液的影响 ,还有待研究。使用酸性、碱性和中性水洗涤有机颜料电泳液 ,并测试zeta电位、粒度分布以及电泳显示性能的变化 ,发现了不同pH值水洗时 ,酸性水对四氯乙烯二甲苯混合溶液联苯胺黄颜料电泳液的影响最大 ,碱性水没有不良影响 ,中性水基本没有影响。这是此类电泳液的进一步优化 ,实现电泳显示研究的基础。

 
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