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    • 28. 发明申请
    • Film with Transparent Conductive Layer, Flexible Functional Element and Flexible Dispersion-Type Electroluminescent Element, and Method for Producing the Same and Electronic Device by the Use Thereof
    • 具有透明导电层的膜,柔性功能元件和柔性分散型电致发光元件及其制造方法及其使用的电子器件
    • US20090302756A1
    • 2009-12-10
    • US11992933
    • 2006-06-26
    • Yuki MurayamaMasaya Yukinobu
    • Yuki MurayamaMasaya Yukinobu
    • H01J1/62H05K1/00B32B29/04B29C63/02
    • H05B33/28H01L51/5206H01L2227/326H01L2251/5338
    • An object of the present invention is to provide various flexible functional elements such as a film with a transparent conductive layer which is excellent in flexibility, more specifically, a film with the transparent conductive layer formed on a thin and flexible base film, and a flexible functional element selected from any of a liquid crystal display element, an organic EL element, and an electronic paper element as well as a flexible dispersion-type EL element, using the film with the transparent conductive layer, and a method for producing the same.There is provided a film with a transparent conductive layer, the layer being formed on a base film by a coating method, characterized in that the base film side of the film with the transparent conductive layer is lined with a support film having a low adhesive layer separable at an interface with the base film, the base film having a thickness of 3 to 25 μm, and that the transparent conductive layer is composed mainly of conductive oxide microparticles and a binder matrix, and a compression treatment is given thereto.
    • 本发明的目的是提供各种柔性功能元件,例如具有柔性优异的透明导电层的膜,更具体地说,具有形成在薄且柔性基膜上的透明导电层的膜,以及柔性 从液晶显示元件,有机EL元件和电子纸元件中选择的功能元件以及使用具有透明导电层的膜的柔性分散型EL元件及其制造方法。 提供具有透明导电层的膜,该层通过涂布方法形成在基膜上,其特征在于,具有透明导电层的膜的基膜侧衬有具有低粘合层的支撑膜 在与基膜的界面处可分离,基膜的厚度为3〜25μm,透明导电层主要由导电性氧化物微粒和粘合剂基质构成,并进行压缩处理。
    • 29. 发明申请
    • Fine Silver Particle Colloidal Dispersion, Coating Liquid for Silver Film Formation, Processes for Producing These, and Silver Film
    • 细银粒子胶体分散体,银膜形成用涂布液,制造方法和银膜
    • US20090256118A1
    • 2009-10-15
    • US12085185
    • 2005-12-08
    • Hiroyuki TanakaKenji KatoMasaya Yukinobu
    • Hiroyuki TanakaKenji KatoMasaya Yukinobu
    • H01B1/22C09D1/00
    • B22F9/24B01J13/0043B22F1/0022B22F2998/10B82Y30/00B22F1/0096
    • A process for producing a fine silver particle colloidal dispersion the fine silver particles of which have a larger average particle diameter than those in the conventional Carey-Lea process and also which has superior dispersion stability. An aqueous silver nitrate solution is allowed to react with a mixed solution of an aqueous iron(II) sulfate solution and an aqueous sodium citrate solution, and the resultant reaction fluid containing an agglomerate of fine silver particles is left at 0 to 100° C. to obtain an agglomerate of fine silver particles having grown into granular particles. Next, this agglomerate of fine silver particles having grown into granular particles is filtered, and, to the resultant cake of the agglomerate of fine silver particles, pure water is added to obtain a fine silver particle colloidal dispersion having an average particle diameter of 20 to 200 nm. This fine silver particle colloidal dispersion is concentrated and washed, further followed by addition of an organic solvent containing dimethyl sulfoxide, to obtain a coating liquid for silver film formation.
    • 一种制备细银粒子胶体分散体的方法,其细银粒子具有比常规Carey-Lea方法更大的平均粒径,并且其具有优异的分散稳定性。 使硝酸银水溶液与硫酸铁水溶液和柠檬酸钠水溶液的混合溶液反应,将含有细银粒子附聚物的反应液保持在0〜100℃。 以获得生长成粒状颗粒的细银粒子的附聚物。 接下来,将生长成粒状颗粒的细银粒子附聚物过滤,向所得到的细银粒子附聚物的滤饼中加入纯水,得到平均粒径为20〜 200nm。 将该细银粒子胶体分散体浓缩并洗涤,然后加入含有二甲基亚砜的有机溶剂,得到银膜形成用涂布液。