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Modified Pigments for Chemically Prepared Toner (CPT)

机译:化学制备碳粉的改性颜料(CPT)

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In the field of electrophotographic printing, the emergence of next-generation printing technologies such as chemically prepared toners (CPT) is changing pigment performance requirements. Every CPT processing technology has a unique set of performance requirements imposed on the colorant. In order to ensure optimum color performance, pigment particles (both black and color) must be well-dispersed and compatible within a host resin. The challenge becomes balancing dispersion quality and resin compatibility in the face of other environmental constraints such as transitions from solvent to water, pH changes, the presence of flocculating agents and surfactants, and large temperature ranges. Under these strict conditions, the ability to tune pigment surface properties (e.g. hydrophilic to hydrophobic, ionic to non-ionic, polymeric vs. small-molecule) to meet both improved color performance requirements as well as CPT processing constraints becomes very powerful. In response to these challenges, Cabot has developed several surface modification technologies that enable dispersions of pigments in aqueous and non-aqueous systems. In this presentation, we will highlight Cabot's portfolio of small-molecule and polymer modified pigments for improved performance in chemical toner systems. We will also discuss how the selection of carbon black morphology can influence key aspects of toner performance, such as color.
机译:在电子照相印刷领域,诸如化学制备的碳粉(CPT)之类的下一代印刷技术的出现改变了颜料性能的要求。每种CPT处理技术都对着色剂有一套独特的性能要求。为了确保最佳的色彩性能,颜料颗粒(黑色和彩色)必须很好地分散并与主体树脂相容。面对其他环境限制,例如从溶剂到水的转变,pH值变化,絮凝剂和表面活性剂的存在以及较大的温度范围,面临的挑战是如何在分散质量和树脂相容性之间取得平衡。在这些严格的条件下,调节颜料表面性能(例如,亲水到疏水,离子到非离子,聚合物与小分子)以满足改进的色彩性能要求以及CPT处理约束的能力变得非常强大。为了应对这些挑战,卡博特开发了几种表面改性技术,可将颜料分散在水性和非水性体系中。在本演讲中,我们将重点介绍Cabot的小分子和聚合物改性颜料产品组合,以改善化学调色剂系统的性能。我们还将讨论炭黑形态的选择如何影响碳粉性能的关键方面,例如颜色。

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