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    • 36. 发明授权
    • Coating liquid for nickel film formation, nickel film, and production method thereof
    • 镍膜形成用涂布液,镍膜及其制造方法
    • US08007692B2
    • 2011-08-30
    • US11922319
    • 2006-06-16
    • Yoshihiro OtsukaMasaya Yukinobu
    • Yoshihiro OtsukaMasaya Yukinobu
    • H01B1/02
    • C23C18/08H05K3/105
    • It is aimed at providing: a coating liquid for nickel film formation suitable for forming a nickel film combinedly possessing an excellent electroconductivity and an excellent film-forming ability (surface flatness), by a coating method, particularly inkjet printing; a nickel film obtained by using the nickel film formation coating liquid; and a production method of such a nickel film.A coating liquid for nickel film formation comprises: nickel formate; and an amine based solvent having a boiling point within a range between 180° C. inclusive and 300° C. exclusive, as a main solvent, thereby allowing obtainment of a coating liquid for nickel film formation suitable for inkjet printing; and there can be obtained a uniform and flat nickel film having a low resistance and being excellent in film strength (adhesion force), by coating the nickel film formation coating liquid onto a substrate; drying the coated coating liquid; and subsequently calcining the dried coating liquid at a temperature of 200° C. or higher in an inert atmosphere or reducing atmosphere.
    • 本发明的目的在于提供:通过涂布方法,特别是喷墨印刷,适合于形成镍膜的镍膜形成用涂布液,其组合具有优异的导电性和优异的成膜性(表面平坦度)。 通过使用镍膜形成涂布液获得的镍膜; 以及这种镍膜的制造方法。 用于镍膜形成的涂布液包括:甲酸镍; 和沸点在180℃以上且300℃以下的范围的胺系溶剂,作为主要溶剂,由此可以获得适合于喷墨印刷的镍膜形成用涂布液, 并且可以通过将镍膜形成涂布液涂布在基板上而获得具有低电阻并且膜强度(附着力)优异的均匀且平坦的镍膜; 干燥涂层涂布液; 然后在惰性气氛或还原气氛中,在200℃以上的温度下煅烧干燥后的涂布液。
    • 37. 发明申请
    • Process for producing fine silver particle colloidal dispersion, fine silver particle colloidal dispersion, and conductive silver film
    • 用于生产细银颗粒胶体分散体,细银颗粒胶体分散体和导电银膜的方法
    • US20110012068A1
    • 2011-01-20
    • US12805162
    • 2010-07-15
    • Kenji KatoMasaya Yukinobu
    • Kenji KatoMasaya Yukinobu
    • H01B1/02C09D5/16
    • B22F1/0022B22F9/24B22F2998/00B82Y30/00H01B1/22Y10S977/773Y10S977/777
    • A process for producing a fine silver particle colloidal dispersion which can simply form conductive silver layers and antimicrobial coatings by screen printing or the like. The process is characterized by having a reaction step of allowing an aqueous silver nitrate solution to react with a mixed solution of an aqueous iron(II) sulfate solution and an aqueous sodium citrate solution to form an agglomerate of fine silver particles, a filtration step of filtering the resultant agglomerate of fine silver particles to obtain a cake of the agglomerate of fine silver particles, a dispersion step of adding pure water to the cake to obtain a first fine silver particle colloidal dispersion of a water system in which dispersion the fine silver particles have been dispersed in the pure water, and a concentration and washing step of concentrating and washing the first fine silver particle colloidal dispersion of a water system.
    • 一种能够通过丝网印刷等简单地形成导电性银层和抗菌涂层的细银粒子胶体分散体的制造方法。 该方法的特征在于具有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以形成细银颗粒的附聚物的反应步骤,过滤步骤 过滤所得到的细银粒子附聚物,得到细银粒子附聚物的饼状物;分散步骤,向滤饼中加入纯水,得到水系的第一微细银粒子胶体分散液,其中分散有细银粒子 已经分散在纯水中,以及浓缩和洗涤水系的第一细银粒子胶体分散体的浓缩和洗涤步骤。
    • 38. 发明申请
    • FLEXIBLE TRANSPARENT CONDUCTIVE FILM AND FLEXIBLE FUNCTIONAL ELEMENT USING THE SAME
    • 柔性透明导电薄膜和使用其的柔性功能元件
    • US20100247810A1
    • 2010-09-30
    • US12739849
    • 2008-10-29
    • Masaya YukinobuYuki MurayamaHirotoshi Izaki
    • Masaya YukinobuYuki MurayamaHirotoshi Izaki
    • B32B9/00B32B7/02C09K19/52H05B33/14
    • H01B1/08H01B1/20H01L27/3297H01L51/0097H01L51/50Y10T428/1055Y10T428/266Y10T428/31993
    • A flexible transparent conductive film includes a base film 1, and a first transparent conductive layer 2a formed by a vapor deposition method and a second transparent conductive layer 3a formed by a coating method, these layers being laminated in the described order or in order reversed thereto on the base film 1, wherein the first transparent conductive layer 2a mainly includes a conductive oxide, the second transparent conductive layer 3a mainly includes conductive oxide fine particles and a binder matrix. The first transparent conductive layer 2a and the second transparent conductive layer 3a adhere to each other so as to restrain generation of a crack in the first transparent conductive layer 2a, or to restrain deterioration in conductivity when the crack has been generated. This configuration enables to provide the flexible transparent conductive film comparable to a conventional sputtered ITO film in terms of transparency, conductivity, and stability of conductivity, and having excellent flexibility, and to provide a flexible functional element using the flexible transparent conductive film.
    • 柔性透明导电膜包括基膜1和通过气相沉积法形成的第一透明导电层2a和通过涂覆方法形成的第二透明导电层3a,这些层按照所述的顺序层叠或按顺序反转 在基膜1上,其中第一透明导电层2a主要包括导电氧化物,第二透明导电层3a主要包括导电氧化物细颗粒和粘合剂基质。 第一透明导电层2a和第二透明导电层3a彼此粘合,以便抑制第一透明导电层2a中的裂纹的产生,或者当产生裂纹时抑制导电性的劣化。 该结构能够在透明性,导电性和导电性的稳定性方面提供与传统的溅射ITO膜相当的柔性透明导电膜,并且具有优异的柔性,并且提供使用柔性透明导电膜的柔性功能元件。