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    • 61. 发明授权
    • Self-lubricating device
    • 自润滑装置
    • US5731077A
    • 1998-03-24
    • US458703
    • 1995-06-02
    • Kazufumi OgawaNorihisa MinoMamoru Soga
    • Kazufumi OgawaNorihisa MinoMamoru Soga
    • B05D1/18B05D5/08C09D4/00B32B9/04
    • B82Y30/00B05D1/185B82Y40/00C09D4/00B05D5/08Y10T428/261Y10T428/266Y10T428/268Y10T428/31536Y10T428/31663
    • A chemically adsorbed film having a surface layer containing fluorine groups and a stem layer chemically bonded by siloxane bonds to a substrate is formed on the surface of a frictional portion of a machine part such as a gear or a bearing or on the surface of a game ball. An excellently self-lubricating low frictional resistance machine part or game ball thus can be obtained. A frictional portion of a gear or the like, made of SiO.sub.2 or like ceramic material, is dipped and held in a solution containing a surface active material, e.g., CF.sub.3 (CF.sub.2).sub.7 (CH.sub.2).sub.2 SiCl.sub.3 dissolved in a non-aqueous solvent. A hydrochloric acid removal reaction is brought about between SiCl groups of the material, which contains a fluorocarbon and a chlorosilane group, and hydroxyl groups numerously present on the SiO2 surface, thus forming bonds of CF.sub.3 (CF.sub.2).sub.7 (CH.sub.2).sub.2 Si(O--).sub.3 over the entire frictional portion surface. A fluorine-containing monomolecular film thus is formed, which is chemically bonded to the substrate and has a thickness of about 1.5 nm.
    • 在机械部件例如齿轮或轴承的摩擦部分的表面上或游戏表面上形成具有含氟基团的表面层和通过硅氧烷键合到基材上的茎层的化学吸附膜 球。 因此可以获得优异的自润滑低摩擦阻力机器部件或游戏球。 将由SiO 2或类似陶瓷材料制成的齿轮等的摩擦部分浸渍并保持在含有溶解在非水溶剂中的表面活性物质例如CF 3(CF 2)7(CH 2)2 ClCl 3)的溶液中。 在含有碳氟化合物和氯硅烷的材料的SiCl基团和SiO 2表面上大量存在的羟基之间产生盐酸去除反应,从而形成CF 3(CF 2)7(CH 2)2 Si(O - ) 在整个摩擦部分表面上。 因此,形成与基板化学键合并且具有约1.5nm的厚度的含氟单分子膜。
    • 62. 发明授权
    • Method of producing an organic device
    • 生产有机装置的方法
    • US5681442A
    • 1997-10-28
    • US565636
    • 1995-11-29
    • Kazufumi OgawaNorihisa Mino
    • Kazufumi OgawaNorihisa Mino
    • H01L51/05C08F38/00H01L21/368H01L51/00H01L51/30C25D9/02
    • H01L51/0075H01L51/0094H01L51/0545H01L51/0036H01L51/0062Y10S428/901Y10T428/24917
    • A process for producing an organic device includes forming a first electrode and a second electrode on a substrate having an insulating film formed on a surface thereof, etching out the insulating film with the first electrode and the second electrode being used as masks, forming a monomolecular or built-up monomolecular film containing electrolytically polymerizable unsaturated groups directly or indirectly on the surface of the substrate by a chemical absorption method or the Langmuir-Blodgett method. The process further includes a procedure of spreading a surfactant containing the electrolytically polymerizable unsaturated groups on the surface of a water bath to form a monomolecular film, transferring at least one layer of the monomolecular film into the surface of the substrate, and chemically bonding molecules of the surfactant to form at least one layer of the monomolecular film of the surfactant containing electroconductive conjugated groups, applying a voltage between the first electrode and the second electrode to polymerize the electrolytically polymerizable unsaturated groups, and deriving a third electrode from the substrate such that the substrate acts as the third electrode.
    • 一种制造有机器件的方法包括:在其表面上形成有绝缘膜的基板上形成第一电极和第二电极,用第一电极和第二电极作为掩模蚀刻绝缘膜,形成单分子 或通过化学吸收法或Langmuir-Blodgett法直接或间接地在基材表面上含有电解聚合性不饱和基团的单分子膜。 该方法还包括将含有电解可聚合不饱和基团的表面活性剂扩散到水浴表面以形成单分子膜,将至少一层单分子膜转移到基材表面的方法,以及化学键合 所述表面活性剂形成至少一层含有导电共轭基团的表面活性剂的单分子膜,在所述第一电极和所述第二电极之间施加电压以聚合所述电解聚合的不饱和基团,并从所述基板导出第三电极, 衬底作为第三电极。
    • 63. 发明授权
    • Medical member and method of manufacturing the same
    • 医疗会员及其制造方法
    • US5578340A
    • 1996-11-26
    • US485787
    • 1995-06-07
    • Kazufumi OgawaNorihisa MinoMamoru Soga
    • Kazufumi OgawaNorihisa MinoMamoru Soga
    • A61L33/00B05D1/18C09D4/00B05D3/06B05D3/10B05D1/36
    • B82Y30/00A61L33/0088B05D1/185B82Y40/00B82Y5/00C09D4/00Y10S623/923
    • A medical member having active hydrogen groups such as hydroxyl, amino or imino groups at its surface, is dipped, either directly or after formation of an inner layer on its surface, into a solution. The solution is prepared by dissolving a surface active material, e.g., CF.sub.3 (CF.sub.2).sub.7 (CH.sub.2).sub.2 SiCl.sub.3 in a non-aqueous solvent. A dehydrochlorination reaction is brought about between active hydrogen groups at the surface of the member and SiCl groups of the surface active material, thus producing bonds ofCF.sub.3 (CF.sub.2).sub.7 (CH.sub.2).sub.2 Si(O--).sub.3over the entire surface. A fluorine-containing monomolecular film is formed, which is chemically (or covalently) bonded to the member surface and has a thickness at the nanometer level. Since the chemically adsorbed film is covalently bonded to the member or inner layer, it is chemically stable and difficult to separate. Medical members can be obtained when the invention is applied to an artificial tooth, a joint, a bone, a blood bag, a catheter, a blood transportation tool, a dialysis equipment part, an operation thread, a medical implant and an operation tool.
    • 在其表面具有羟基,氨基或亚氨基的活性氢基团的医学成分在其表面上直接或内层形成后溶解成溶液。 通过将表面活性物质例如CF 3(CF 2)7(CH 2)2 ClCl 3溶解在非水溶剂中来制备溶液。 在成员表面的活性氢基团和表面活性材料的SiCl基团之间产生脱氯化氢反应,从而在整个表面上产生CF 3(CF 2)7(CH 2)2 Si(O-)3的键。 形成化学(或共价)结合到构件表面并具有纳米级厚度的含氟单分子膜。 由于化学吸附的膜共价结合到构件或内层,因此化学稳定且难以分离。 当将本发明应用于人造牙齿,关节,骨骼,血袋,导管,血液输送工具,透析设备部件,手术线,医疗植入物和操作工具时,可获得医疗部件。
    • 65. 发明授权
    • Ultra thin polymer film electret
    • 超薄聚合物电极驻极体
    • US5536982A
    • 1996-07-16
    • US507667
    • 1995-07-25
    • Norihisa MinoYoshikazu YamagataKazufumi Ogawa
    • Norihisa MinoYoshikazu YamagataKazufumi Ogawa
    • B29C41/12B29L9/00B29L31/34C08J5/18C08J7/00H01G7/02G11C13/02
    • H01G7/023B82Y30/00B82Y40/00
    • The invention concerns an ultra thin polymer film electret comprising a polymer and a substrate having a surface electric charge, wherein a side chain of the polymer and the substrate are physically or chemically bonded. A method of manufacturing an ultra thin polymer film electret comprising: adsorbing a monomolecular film comprising a unsaturated group or a laminated film comprising the monomolecular film on to a substrate surface, irradiating the monomolecular film or the laminated film with an energy beam to polymerize the unsaturated groups and applying a high voltage to the film is also disclosed. Further, a method of manufacturing an ultra thin polymer film electret comprising: physically bonding a side chain of the polymer to a substrate surface to form a thin film and applying a high voltage to the thin film is also disclosed.
    • 本发明涉及一种包含聚合物和具有表面电荷的基底的超薄聚合物膜驻极体,其中聚合物和基底的侧链物理或化学键合。 一种制造超薄聚合物膜驻极体的方法,包括:将包含不饱和基团的单分子膜或包含单分子膜的层压膜吸附到基材表面上,用能量束照射单分子膜或层压膜以聚合不饱和 并且还公开了向薄膜施加高电压的组。 此外,还公开了一种制造超薄聚合物膜驻极体的方法,其包括:将聚合物的侧链物理结合到基板表面以形成薄膜并向薄膜施加高电压。
    • 68. 发明授权
    • Chemically adsorbed film and method of manufacturing the same
    • 化学吸附膜及其制造方法
    • US5466487A
    • 1995-11-14
    • US316106
    • 1994-09-30
    • Tadashi OhtakeNorihisa MinoKazufumi Ogawa
    • Tadashi OhtakeNorihisa MinoKazufumi Ogawa
    • B05D1/18B05D3/02
    • B82Y30/00B05D1/185B82Y40/00Y10T428/31504Y10T428/31533Y10T428/31536Y10T428/31989Y10T428/31993
    • A chemically adsorbed monomolecular or a laminated monomolecular film comprising a monomolecular film formed on said substrate surface by covalent S-bonds is disclosed. For example, the covalent S-bond is selected of a group consisting of --(S.dbd.O)-- and --(O.dbd.S.dbd.O)--. A method of producing a chemical adsorption film comprising; contacting a substrate containing hydroxl groups present on the surface with a non-aqueous solvent containing a material having a thionyl halide group or sulfuryl haloride group; removing unreacted surface active material remaining on the substrate by washing the substrate with a non-aqueous organic solution for making monomolecular a precursor film; reacting unreacted surface active material remaining on the adsorbed monomolecular precursor film with water; and drying the adsorbed monomolecular film is also disclosed. Further, a method of producing a laminated chemical adsorption film comprising laminating a monomolecular adsorption film by repeating the above steps is disclosed.
    • 公开了一种化学吸附单分子或包含通过共价S-键在所述基片表面上形成的单分子膜的层叠单分子膜。 例如,共价S-键选自 - (S = O) - 和 - (O = S = O) - 。 一种生产化学吸附膜的方法,包括: 使含有存在于表面上的羟基的底物与含有具有亚硫酰卤基或硫酰卤基的物质的非水溶剂接触; 通过用用于制备单分子前体膜的非水有机溶液洗涤基板来除去残留在基板上的未反应的表面活性物质; 将残留在吸附的单分子前体膜上的未反应的表面活性物质与水反应; 并且还公开了吸附的单分子膜的干燥。 此外,公开了通过重复上述步骤来层压单分子吸附膜的层压化学吸附膜的制造方法。
    • 69. 发明授权
    • Chemically adsorbed monomolecular lamination film
    • 化学吸附单分子层压膜
    • US5466486A
    • 1995-11-14
    • US316105
    • 1994-09-30
    • Kazufumi OgawaNorihisa MinoMamoru Soga
    • Kazufumi OgawaNorihisa MinoMamoru Soga
    • B05D1/18C08J7/04C09D4/00C09D183/08B05D3/02
    • C04B41/52B05D1/185B82Y30/00B82Y40/00B82Y5/00C04B41/009C04B41/89C08J7/047C09D183/08C09D4/00C04B2111/00965C08J2483/00Y10T428/261Y10T428/31612Y10T428/31663Y10T428/31667
    • The invention to provide a chemically adsorbed monomolecular lamination film comprising a chemically adsorbed monomolecular film formed via a siloxane-based monomolecular or polymer film on a substrate surface. It also seeks to provide a method of forming a chemically adsorbed monomolecular film efficiently and with high density on a substrate surface with few hydroxyl groups, which method comprises a step of contacting a substrate containing hydroxyl groups present on the surface with a non-aqueous solution containing a material with plural chlorosilanol groups in molecule, a step of removing the material remaining on the substrate without reaction by washing the substrate with a non-aqueous organic solution (if this process is omitted, the siloxane-based polymer film is prepared on the substrate), a step of forming a monomolecular film constituted by a compound containing a silanol group in molecule on the substrate by exposing to the air containing moisture or washing with water, after the removal step, and a step of laminating a monomolecular adsorption film by adsorbing a chlorosilane-based surface active agent constituted by a straight hydrocarbon chain having a chlorosilane groups at one end onto the substrate after the monomolecular or polymer film formation step.
    • 本发明提供一种化学吸附的单分子层叠膜,其包含在基材表面上通过基于硅氧烷的单分子或聚合物膜形成的化学吸附的单分子膜。 它还寻求提供一种在几乎没有羟基的基材表面上有效且高密度地形成化学吸附的单分子膜的方法,该方法包括使含有表面上存在的羟基的基材与非水溶液接触的步骤 含有分子中具有多个氯硅烷醇基团的材料,通过用非水有机溶液洗涤基材而除去残留在基材上的材料而不反应的步骤(如果省略该方法,则将硅氧烷基聚合物膜制备在 底物),在除去步骤之后,通过暴露于含有水分的空气或用水洗涤的方式,在基板上分子形成由分子中含有硅烷醇基的化合物构成的单分子膜的步骤,以及将单分子吸附膜层叠 吸附由o具有氯硅烷基的直链烃链构成的氯硅烷系表面活性剂 在单分子或聚合物膜形成步骤之后结束到基底上。