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Mierocapsule-based materials for electrophoretic displays

机译:基于Mierocape的电泳显示器材料

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摘要

Electrophoretic displays, the rewritable non-light-emitting display technology based on the movement of colored pigments inside a low dielectric liquid as a voltage is applied, have attracted a great deal of academic and commercial interests due to the combination of the advantages of both electronic displays and conventional paper, including paper-like high contrast appearance, ultra-low power consumption, thinness, flexibility etc. Fabrication of electrophoretic ink by microencapsulating the electrophoretic suspension into individual microcapsules is one way to realize such application. However, there are still some limitations for its commercial application, such as the dispersion and the electrophoretic mobility of charged particles due to the nano-particles aggregation, the barrier property and stability of microcapsule wall due to the suspension releasing, etc. In this presentation, systematic studies on the preparation of electrophoretic particles and microencapsulation by complex coacervation method were carried out to solve the mentioned problems. The obtained microcapsules can be quasi-monolayer coated on ITO/PET substrate and driven by static mode to obtain a matrix character display prototype.
机译:电泳显示器,基于电压的低介电液体内部的彩色颜料的运动的可重写非发光显示技术,由于电子的优势的组合,吸引了大量的学术和商业利益。显示器和传统纸张,包括纸张状高对比度外观,超低功耗,薄度,柔韧性等通过将电泳悬浮液微胶囊化为单独的微胶囊来制造是实现这种应用的一种方式。然而,其商业应用仍有一些限制,例如由于纳米颗粒聚集,由于纳米粒子聚集,由于悬浮释放等纳米颗粒聚集,微胶囊壁的阻隔性和稳定性等分散和电泳迁移率。上,经复合凝聚方法制备电泳颗粒和微胶囊化的系统的研究被进行以解决上述问题。所获得的微胶囊可以是涂覆在ITO / PET基板上的准单层,并由静态模式驱动以获得矩阵字符显示原型。

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