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Fundamentals and Applications of Large Area Multi-spectral state Electrophoretic Panels for Displays and Smart Windows.

机译:显示器和智能窗户的大面积多光谱态电泳面板的基本原理和应用。

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摘要

Large area electro-optic switches are increasingly important, including flat panel displays and the more recently emerging technology of smart windows. However, these types of switches are typically limited to switching between only two states, such as a clear and an opaque state. Therefore optical performance and functionality of large-area electro-optic devices could be significantly improved, if switches were developed that could provide modulation of multiple spectral states. Simple solutions such as adding a color filter array onto a clear/opaque switch are not the ideal solution, as seen in displays where color filters reduce the display brightness by blocking more than 2/3rds of the visible spectrum. There is a clear need to develop alternate electro-optic switches, especially those that broaden the spectral capability within the switch without a significant increase in complexity of the device or increase in optical loss. If such a novel switch could be realized, full-color displays could be bright enough to even be easily read in sunlight, and smart windows could be made into more compelling products by allowing additional desirable lighting features such as control of color temperature.;In this dissertation a completely new bi-primary pixel switching mechanism is demonstrated that can switch one single pixel into 4 color states (2 color states along with black and white). The approach uses two-particle, two-colored electrophoretic inks along with novel device architectures which could simplify large area device manufacturing. For displays, this approach provides 2X higher brightness and reflectivity than the already existing side-by-side RGBW color system approach. For smart windows, dual spectrum control is enabled (color temperature, visible vs. IR, etc.), finally enabling smart window technology which provides features not easily possible with simple mechanical blinds. Importantly, this new structure is highly manufacturable, requiring no alignment, and can be fabricated by micro replication and roller printing methods. This dissertation spans fundamental theory, through experimental electrophoretic characterization, through compelling integration and performance demonstrations.
机译:大面积的光电开关越来越重要,包括平板显示器和最近出现的智能窗户技术。但是,这些类型的开关通常仅限于仅在两种状态(例如,透明状态和不透明状态)之间切换。因此,如果开发出可以提供多种光谱状态调制的开关,则可以大大改善大面积电光设备的光学性能和功能。如将彩色滤光片添加到透明/不透明开关上的简单解决方案并不是理想的解决方案,在显示器中,彩色滤光片通过阻挡可见光谱的2/3或更多来降低显示亮度。显然需要开发替代的电光开关,尤其是那些在不显着增加设备复杂性或不增加光损耗的情况下扩宽开关内光谱能力的电光开关。如果能够实现这种新颖的开关,则全色显示屏可能足够亮,甚至可以在阳光下轻松阅读,并且通过允许其他所需的照明功能(例如控制色温),智能窗户可以制成更具吸引力的产品。本文提出了一种全新的双原色像素切换机制,该机制可以将一个像素切换为4种颜色状态(黑白两种颜色状态)。该方法使用两颗粒,两种颜色的电泳墨水以及新颖的器件架构,可以简化大面积器件的制造。对于显示器,此方法提供的亮度和反射率比现有的并排RGBW彩色系统方法高2倍。对于智能窗户,启用了双光谱控制(色温,可见光与红外等),最终启用了智能窗户技术,该技术提供了简单的机械百叶窗无法轻易实现的功能。重要的是,这种新结构具有很高的可制造性,不需要对齐,并且可以通过微型复制和滚筒印刷方法制造。本文通过实验电泳表征,引人注目的集成和性能演示,涵盖了基础理论。

著录项

  • 作者

    Mukherjee, Sayantika.;

  • 作者单位

    University of Cincinnati.;

  • 授予单位 University of Cincinnati.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:40

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