HP Labs, Hewlett-Packard Company, 1501 Page Mill Road, Palo Alto, California 94304, USA.
Langmuir. 2011 Oct 4;27(19):11845-51. doi: 10.1021/la202660d. Epub 2011 Sep 9.
Electrophoretic inks, which are suspensions of colorant particles that are controllably concentrated and dispersed by applied electric fields, are the leading commercial technology for high-quality reflective displays. Extending the state of the art for high-fidelity color in these displays requires improved understanding and control of the colloidal systems. In these inks, reverse micelles in nonpolar media play key roles in media and particle charging. Here we investigate the effect of surfactant structure on reverse micelle size and charging properties by synthesizing different surfactants with variations in polyamine polar head groups. Small-angle X-ray scattering (SAXS) and dynamic light scattering (DLS) were used to determine the micelle core plus shell size and micelle hydrodynamic radius, respectively. The results from SAXS agreed with DLS and showed that increasing polyamines in the surfactant head increased the micelle size. The hydrodynamic radius was also calculated on the basis of transient current measurements and agreed well with the DLS results. The transient current technique further determined that increasing polyamines increased the charge stabilization capability of the micelles and that an analogous commercial surfactant OLOA 11000 made for a lower concentration of charge-generating ions in solution. Formulating magenta inks with the various surfactants showed that the absence of amine in the surfactant head was detrimental to particle stabilization and device performance.
电泳油墨是由可控制浓度和分散的颜料颗粒悬浮液组成的,是高质量反射显示器的主要商业技术。为了在这些显示器中提高高保真度色彩的技术水平,需要改进对胶体系统的理解和控制。在这些油墨中,非极性介质中的反胶束在介质和颗粒充电中起着关键作用。在这里,我们通过合成具有不同多胺极性头的不同表面活性剂来研究表面活性剂结构对反胶束尺寸和充电特性的影响。小角 X 射线散射(SAXS)和动态光散射(DLS)分别用于确定胶束核加壳尺寸和胶束水动力半径。SAXS 的结果与 DLS 一致,表明表面活性剂头部中多胺的增加会增加胶束的尺寸。水动力半径还基于瞬态电流测量进行了计算,并且与 DLS 结果非常吻合。瞬态电流技术进一步确定,增加多胺会增加胶束的电荷稳定能力,而类似的商用表面活性剂 OLOA 11000 会使溶液中产生电荷的离子浓度降低。用各种表面活性剂配制品红色油墨表明,表面活性剂头部中没有胺对颗粒稳定和器件性能有害。