会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 52. 发明授权
    • Water repellent coating film, method and apparatus for manufacturing the same, and water repellent coating material composition
    • 防水涂膜,其制造方法和装置以及防水涂料组合物
    • US06333074B1
    • 2001-12-25
    • US09480252
    • 2000-01-11
    • Kazufumi OgawaYasuo TakebeNorihisa Mino
    • Kazufumi OgawaYasuo TakebeNorihisa Mino
    • B05D300
    • B82Y30/00B05D1/185B82Y40/00F28F17/005F28F2245/02Y10T428/2936Y10T428/2995Y10T428/31663Y10T428/31678
    • By forming a film that comprises a microcrystalline polymer having at least a fluorocarbon group and has a rough surface on a surface of a base material, super-water-repellency is provided, the dew condensation water of an air conditioner, for example, can be easily removed, and the freezing of the fin of the heat exchanger can be prevented. A fin that is made of aluminium is coated with a solution for forming a coating film, in which CF3(CF2)7—(CH2)2—SiCl3 is diluted with nonaqueous cyclohexamethyl trisiloxane at a concentration of 10 vol. % for preparation, to a thickness of 1 to 10 &mgr;m by a brush, and then the cyclohexamethyl trisiloxane is vaporized in an atmosphere having a relative humidity of about 75% at room temperature. CF3(CF2)7—(CH2)2—SiCl3 that remained on the fin is rapidly hydrolyzed with the moisture in the atmosphere, and the moisture in air and a —SiCl3 group dehydrochlorinated to form a microcrystalline polymer on the fin. As a result, a coating film having a surface roughness in the range of 1 to 40 &mgr;m and a contact angle of about 171° to water can be formed.
    • 通过形成包含至少具有碳氟化合物基团并且在基材表面上具有粗糙表面的微晶聚合物的膜,提供超疏水性,例如空调的结露水可以是 容易地除去,并且可以防止热交换器的翅片的冻结。 用铝制成的翅片涂覆有形成涂膜的溶液,其中CF 3(CF 2)7 - (CH 2)2 -SiCl 3用10体积浓度的非水性环己甲基三硅氧烷稀释。 制备时,用刷子将其厚度设定为1〜10μm,然后在室温下在相对湿度为约75%的气氛中将环己甲基三硅氧烷蒸发。 残留在翅片上的CF 3(CF 2)7 - (CH 2)2 -SiCl 3随着大气中的水分,空气中的水分和-SiCl 3基团脱氯化氢而迅速水解,从而在翅片上形成微晶聚合物。 结果,可以形成表面粗糙度为1〜40μm,与水接触角为约171°的涂膜。
    • 53. 发明授权
    • Method of manufacturing a chemically adsorbed multilayer film
    • 制造化学吸附多层膜的方法
    • US5869136A
    • 1999-02-09
    • US12753
    • 1993-02-03
    • Tadashi OhtakeNorihisa MinoKazufumi Ogawa
    • Tadashi OhtakeNorihisa MinoKazufumi Ogawa
    • B05D1/18C03C23/00B05D1/36
    • B82Y30/00B05D1/185B82Y40/00C03C23/00
    • A chemically adsorbed multilayer film is formed through the process of replacing a halogen atom on the surface of a chemically adsorbed film with an alkaline metal or changing the halogen atom to a Grignard group by Grignard reaction. This manufacturing method does not disrupt the molecules of the chemically adsorbed film, is easy to perform, low in cost and is safe. After replacing the halogen (for example, Br) on the surface of the film with an alkaline metal such as Li, a condensation reaction including a dealkalihalide reaction is promoted by contacting the chemically adsorbed film with an adsorbent, such as a chemical adsorbent--containing a halosilane group at one end of a molecule--dissolved in a nonaqueous solvent. A chemically adsorbed multilayer film is then formed by reacting the chemically adsorbed film with chemical absorption composition and with water after removing unreacted adsorbents using a nonaqueous solution.
    • 通过用碱金属代替化学吸附膜表面上的卤素原子或通过格利雅反应将卤素原子改变成格利雅特基团的方法形成化学吸附的多层膜。 该制造方法不会破坏化学吸附膜的分子,容易实施,成本低,安全。 用Li等碱性金属取代膜表面的卤素(例如Br)后,通过使化学吸附膜与吸附剂(如含化学吸附剂)接触来促进包括脱卤化物反应的缩合反应 分子一端的卤代硅烷基溶解在非水溶剂中。 然后通过使用非水溶液除去未反应的吸附剂,使化学吸附膜与化学吸收组合物和水反应形成化学吸附的多层膜。
    • 55. 发明授权
    • Method of manufacturing organic films using organic compound and
metallic compound
    • 使用有机化合物和金属化合物制造有机膜的方法
    • US5424098A
    • 1995-06-13
    • US123102
    • 1993-09-20
    • Kazuhiro NishiyamaNorihisa MinoKazufumi Ogawa
    • Kazuhiro NishiyamaNorihisa MinoKazufumi Ogawa
    • B05D1/18B05D7/24B32B9/00C03C17/28C08J7/06
    • B82Y30/00B05D1/185B82Y40/00
    • A method of manufacturing an organic film comprises dipping and holding a substrate having an active hydrogen atom on its surface in a metallic compound having an electrophilic property or solution of the metallic compound and washing the substrate with a nonaqueous solvent, thereby manufacturing a metallic monomolecular film on the substrate surface, or dipping and holding a substrate having an organic monomolecular film in organic compound or acid anhydride of organic compound or solution dissolving the organic solution, thereby, manufacturing an organic monomolecular film on a metallic compound monomolecular film. According to the method of manufacturing an organic film above mentioned, unlike the Langmuir-Blodgett technique, a complicated operation is not required and contamination of impurity to inside of film is avoided. As a result, a film having a complicated structure can be manufactured on a substrate simply.
    • 制造有机膜的方法包括在具有亲电性或金属化合物溶液的金属化合物的表面上浸渍并保持具有活性氢原子的基材,并用非水溶剂洗涤基板,由此制造金属单分子膜 在有机化合物或有机化合物的酸酐或溶解有机溶液的溶液中浸渍并保持具有有机单分子膜的基材,从而在金属化合物单分子膜上制造有机单分子膜。 根据上述制造有机膜的方法,与Langmuir-Blodgett技术不同,不需要复杂的操作,并且避免了杂质向膜内部的污染。 结果,可以简单地在基板上制造具有复杂结构的膜。
    • 59. 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。