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    • 3. 发明授权
    • Particle dispersion for display, display medium and display device
    • 显示器,显示介质和显示设备的粒子色散
    • US08477405B2
    • 2013-07-02
    • US12559126
    • 2009-09-14
    • Rie IshiiJun KawaharaNami TokunagaDaisuke Nakayama
    • Rie IshiiJun KawaharaNami TokunagaDaisuke Nakayama
    • G02B26/00
    • H01B1/122G02F1/167G02F2001/1678
    • A particle dispersion for display including: first particles for display including a colorant and a first polymer having a first charging group, the first particles for display being movable in response to an electric field; a first polymeric dispersant attached to the first particles for display; second particles for display including a colorant and a second polymer having a second charging group, the second particles for display being movable in response to an electric field; a second polymeric dispersant attached to the second particles for display; and a dispersing medium in which the first particles for display and the second particles for display are dispersed, the first polymeric dispersant and the second polymeric dispersant having different weight average molecular weights so that the first particles for display and the second particles for display start moving upon application of different voltages.
    • 一种用于显示的颗粒分散体,包括:用于显示的第一颗粒,包括着色剂和具有第一充电基团的第一聚合物,所述第一显示用颗粒可响应于电场而移动; 附着在第一颗粒上用于显示的第一聚合物分散剂; 用于显示的第二颗粒包括着色剂和具有第二充电基团的第二聚合物,所述第二显示用颗粒可响应于电场而移动; 附着在第二颗粒上用于显示的第二聚合物分散剂; 以及其中分散第一显示用颗粒和第二显示用颗粒的分散介质,第一聚合物分散剂和第二聚合物分散剂具有不同的重均分子量,使得第一显示用颗粒和第二显示用颗粒开始移动 应用不同的电压。
    • 4. 发明授权
    • Display medium, display device and display method
    • 显示介质,显示设备和显示方式
    • US07688496B2
    • 2010-03-30
    • US11438743
    • 2006-05-22
    • Hiroaki MoriyamaYasuo YamamotoJun KawaharaMasaaki Abe
    • Hiroaki MoriyamaYasuo YamamotoJun KawaharaMasaaki Abe
    • G02B26/00
    • G02F1/167G09G3/344G09G2320/0626
    • The invention provides a display medium having a dimmer layer which comprises at least two kinds of charged mobile fine particles. Each of the at least two kinds of the charged mobile fine particles respectively has different coloration and a different mobility, and the charged mobile fine particles of at least one kind of the at least two kinds show coloration when in a dispersed state. The invention further provides a display device having an electric field forming unit and the dimmer layer. The invention further provides a display method which uses the display medium and includes putting the charged mobile fine particles of at least one of the kinds being dispersed while having other charged mobile fine particles not being dispersed.
    • 本发明提供了一种显示介质,其具有包含至少两种带电移动细颗粒的调光层。 所述至少两种所述带电移动微粒分别具有不同的着色和不同的迁移率,并且当处于分散状态时,所述至少两种至少一种的带电移动细颗粒显示着色。 本发明还提供一种具有电场形成单元和调光器层的显示装置。 本发明还提供了一种显示方法,其使用显示介质,并且包括将具有分散的至少一种的带电移动细颗粒放置在不分散其它带电移动微粒的同时。
    • 7. 发明申请
    • Display method, and display medium and display device using the method thereof
    • 显示方法,显示介质和显示装置使用其方法
    • US20060272948A1
    • 2006-12-07
    • US11392287
    • 2006-03-29
    • Yasuo YamamotoJun KawaharaTakayuki TakeuchiHiroaki MoriyamaRie Ishii
    • Yasuo YamamotoJun KawaharaTakayuki TakeuchiHiroaki MoriyamaRie Ishii
    • B41M5/20
    • G09F9/372
    • The invention provides a display method, and a display medium and a display device using the method thereof. The display method displays an image through a process for depositing fine metal particles, in which fine metal particles are deposited on a solid surface from an electrolyte by giving one stimulus to the electrolyte, wherein the particle size distribution of the fine metal particles that are deposited on the specific area of the solid surface, has one or more maximum peaks, and at least one of the maximum peaks satisfies the following formula (1): Pp(±30)/Pp(T)≦0.5   (1) where, Pp(T) means the height of the highest peak among the maximum peaks, and Pp(±30) means the height of the distribution curve at the particle size that is ±30% from the particle size of the fine metal particles at the height of the highest peak.
    • 本发明提供一种显示方法,以及使用其方法的显示介质和显示装置。 显示方法通过对电解质进行一次刺激而通过沉积金属微粒的方法显示图像,其中细金属颗粒从电解质沉积在固体表面上,其中沉积的金属微粒的粒度分布 在固体表面的特定区域上具有一个或多个最大峰,并且至少一个最大峰满足以下公式(1):<?in-line-formula description =“In-line Formulas”end =“ “P”(±30)/ Pp(T)<= 0.5(1)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中,Pp(T) 最高峰的最高峰的高度,Pp(±30)是指在最高峰的高度处的细金属颗粒的粒径为30%的粒度的分布曲线的高度。