Monomolecular film of copolymer or laminated film therefrom and process for producing the same
    1.
    发明专利
    Monomolecular film of copolymer or laminated film therefrom and process for producing the same 审中-公开
    共聚物或层压膜的单分子膜及其制造方法

    公开(公告)号:JP2009114409A

    公开(公告)日:2009-05-28

    申请号:JP2007292008

    申请日:2007-11-09

    Abstract: PROBLEM TO BE SOLVED: To provide a monomolecular film or a laminated film therefrom having a plurality of monomolecular films that is useful for a resist material or the like. SOLUTION: The monomolecular film or a laminated film therefrom is produced by coating a substrate with a monomolecular film of a copolymer of an acrylic- or styrenic addition-polymerizable monomer comprising a silsesquioxane derivative and an addition polymerizable monomer represented by formula (B) (wherein R b denotes hydrogen or a methyl: Z 2 is -NH-; and n is an integer of 2-20). COPYRIGHT: (C)2009,JPO&INPIT

    Abstract translation: 要解决的问题:提供具有多个可用于抗蚀剂材料等的单分子膜的单分子膜或层压膜。 解决方案:单分子膜或其层压膜通过用包含倍半硅氧烷衍生物的丙烯酸或苯乙烯可加成聚合单体和由式(B)表示的可加聚单体的共聚物的单分子膜 )(其中R b表示氢或甲基:Z 2是-NH-; n是2-20的整数)。 版权所有(C)2009,JPO&INPIT

    Optical element prepared from polymer having cage silsesquioxane skeleton as raw material
    2.
    发明专利
    Optical element prepared from polymer having cage silsesquioxane skeleton as raw material 有权
    用作原料的笼式硅藻土聚合物制备的光学元件

    公开(公告)号:JP2008202027A

    公开(公告)日:2008-09-04

    申请号:JP2007292019

    申请日:2007-11-09

    Abstract: PROBLEM TO BE SOLVED: To provide an optical element material excellent in thermooptic coefficient, solvent resistance, and heat resistance, and further having stable quality controlled in molecular weight. SOLUTION: The optical element is prepared using a polymer prepared using a cage silsesquioxane derivative represented by formula (1-0) where R is independently a 1-40C alkyl, a 6-40C aryl any hydrogen of which may be substituted by a halogen or a 1-20C alkyl, or a 7-40C arylalkyl in which any hydrogen in an aryl may be substituted by a halogen or a 1-20C alkyl. COPYRIGHT: (C)2008,JPO&INPIT

    Abstract translation: 要解决的问题:提供光热系数,耐溶剂性和耐热性优异的光学元件材料,并进一步具有分子量控制的稳定质量。 解决方案:使用由式(1-0)表示的笼型倍半硅氧烷衍生物制备的聚合物制备光学元件,其中R独立地为1-40C烷基,其中任何氢可以被其取代的6-40C芳基 卤素或1-20C烷基或其中芳基中的任何氢可被卤素或1-20C烷基取代的7-40C芳基烷基。 版权所有(C)2008,JPO&INPIT

    Single molecular film and a method of manufacturing the same copolymer
    3.
    发明专利
    Single molecular film and a method of manufacturing the same copolymer 有权
    共聚物的单分子膜及其制造方法

    公开(公告)号:JP2007308527A

    公开(公告)日:2007-11-29

    申请号:JP2006136228

    申请日:2006-05-16

    Inventor: MIYASHITA TOKUJI

    Abstract: PROBLEM TO BE SOLVED: To provide a monomolecular film in which hydrophobic groups or hydrophilic groups are regularly oriented at the nanometer-level, to provide a polymer thin film comprising the plurality of monomolecular films laminated. SOLUTION: The method for producing the monomolecular film is characterized as follows. A substrate is coated with the monomolecular film of a copolymer of a fluorosilsesquioxane containing one addition polymerizable functional group with an addition polymerizable monomer according to the Langmuir-Blodgett method. COPYRIGHT: (C)2008,JPO&INPIT

    Abstract translation: 要解决的问题:提供疏水基团或亲水基团以纳米级规则取向的单分子膜,以提供包含多个单分子膜的聚合物薄膜。 解决方案:单分子膜的制造方法的特征如下。 根据Langmuir-Blodgett方法,将含有一个可加聚官能团的氟代倍半硅氧烷共聚物的单分子膜与可加聚单体一起涂布在基材上。 版权所有(C)2008,JPO&INPIT

    Microchannel system
    4.
    发明专利
    Microchannel system 有权
    微通道系统

    公开(公告)号:JP2005270925A

    公开(公告)日:2005-10-06

    申请号:JP2004091997

    申请日:2004-03-26

    Inventor: MIYASHITA TOKUJI

    Abstract: PROBLEM TO BE SOLVED: To provide a microchannel system by which when two liquids not mixing with each other are allowed to flow in a channel and to come into contact with each other, the two liquids flow while forming an interface between the two and forming layers without aggregating and forming any aggregation and they can be separated again at the microscale, a reaction apparatus using the microchannel system, and the like.
    SOLUTION: The microchannel system has a minute channel for moving liquids, at least 2 introduction paths for injecting liquids into the microchannel, at least 1 discharging path for discharging liquids from the microchannel, and the inner surface of the microchannel having a part hydrophilized and a part hydrophobized, wherein the part hydrophilized and the part hydrophobized span each from the upstream end to the downstream end of the channel and the treatment to provide hydrophilicity and/or the treatment to provide hydrophobicity is performed by accumulation of polymer LB membranes. Also provided are a reaction apparatus using the microchannel system and the like.
    COPYRIGHT: (C)2006,JPO&NCIPI

    Abstract translation: 要解决的问题:提供一种微通道系统,当两个彼此不混合的液体允许在通道中流动并彼此接触时,两种液体在形成两者之间的界面的同时流动 并且形成层而不聚集并形成任何聚集体,并且它们可以在微尺度下再次分离,使用微通道系统的反应装置等。 解决方案:微通道系统具有用于移动液体的微通道,用于将液体注入微通道的至少2个引入路径,用于从微通道排出液体的至少一个排出路径,并且微通道的内表面具有部分 亲水化和部分疏水化,其中亲水化部分和部分疏水化的部分从通道的上游端到下游端跨越,并且提供亲水性和/或处理以提供疏水性的处理通过聚合物LB膜的堆积进行。 还提供了使用微通道系统等的反应装置。 版权所有(C)2006,JPO&NCIPI

    Silsesquioxane polymer and silicone resin molding
    6.
    发明专利
    Silsesquioxane polymer and silicone resin molding 有权
    SILSESQUIOXANE聚合物和硅树脂模塑

    公开(公告)号:JP2009298908A

    公开(公告)日:2009-12-24

    申请号:JP2008154550

    申请日:2008-06-12

    Abstract: PROBLEM TO BE SOLVED: To provide a polymer and a silicone resin molding excellent in transparency, which are little in modulus variation at a glass transition temperature or above and freely foldable, and to provide a substrate for a display element using the silicone resin molding. SOLUTION: The polymer, which includes a silsesquioxane backbone, is obtained by reacting a specific, cage-type silicone compound (1-1) having an alkenyl group, a specific, cage-type silicone compound (2-2) having a Si-H group, and a specific, straight chain-type silicone compound (3-2) having a Si-H group. Let the number of moles of the alkenyl that the compound used for the reaction and represented by (1-1) has be (A), the number of moles of the Si-H that the compound represented by (3-2) has be (C), and the above compounds are reacted so that m in the (3-2) and the ratio of the (C) to (A) satisfy the equation (m+2)×(C)/(A)=1-3 in order to obtain the polymer. COPYRIGHT: (C)2010,JPO&INPIT

    Abstract translation: 要解决的问题:提供在玻璃化转变温度以上且可自由折叠时模量变化小的透明性优异的聚合物和有机硅树脂成型体,并且提供使用硅氧烷的显示元件用基材 树脂成型。 解决方案:包含倍半硅氧烷主链的聚合物是通过使具有烯基的特定的保持型硅酮化合物(1-1),特定的笼型硅氧烷化合物(2-2)与 Si-H基和具有Si-H基的特定的直链型硅氧烷化合物(3-2)。 使用(1-1)表示的化合物所用的烯基的摩尔数为(A),由(3-2)表示的化合物的Si-H的摩尔数为 (C)和上述化合物反应,使得(3-2)中的m和(C)与(A)的比率满足式(m + 2)×(C)/(A)= 1 -3以获得聚合物。 版权所有(C)2010,JPO&INPIT

    Material for electric circuit board, and electric circuit board using the same
    7.
    发明专利
    Material for electric circuit board, and electric circuit board using the same 审中-公开
    电路板材料及使用该电路板的电路板

    公开(公告)号:JP2008112942A

    公开(公告)日:2008-05-15

    申请号:JP2006296509

    申请日:2006-10-31

    Abstract: PROBLEM TO BE SOLVED: To provide an electric board material capable of forming a circuit efficiently by an irradiation of laser beams.
    SOLUTION: The laser beams are irradiated on a material in which metal particulates are adhered onto a surface of a formed body of a synthetic resin composed of a polymer containing a silsesquioxane structure exemplified in the formula (1), the formula (2) and the formula (3), to manufacture the electric board material. In the formula (1), the formula (2) and the formula (3), each R independently denotes phenyl, cyclopentyl, cyclohexyl, or perfluoroalkyl or t-butyl in which a carbon number is 1-10, and each R
    1 independently denotes alkyl or phenyl in which a carbon number is 1-4.
    COPYRIGHT: (C)2008,JPO&INPIT

    Abstract translation: 要解决的问题:提供能够通过激光束的照射有效地形成电路的电路板材料。 解决方案:将激光束照射在金属微粒附着在由含有式(1),式(2)中示例的倍半硅氧烷结构的聚合物构成的合成树脂的成形体的表面上的材料上 )和公式(3),制造电路板材料。 在式(1)中,式(2)和式(3)各自独立地表示苯基,环戊基,环己基或全氟烷基或叔丁基,其中碳数为1-10,并且每个R 1 独立地表示碳数为1-4的烷基或苯基。 版权所有(C)2008,JPO&INPIT

    Liquid crystal alignment layer
    8.
    发明专利

    公开(公告)号:JP2004101782A

    公开(公告)日:2004-04-02

    申请号:JP2002262300

    申请日:2002-09-09

    Abstract: PROBLEM TO BE SOLVED: To provide a liquid crystal alignment layer with which liquid crystal molecules are uniformly aligned, stable display operation is carried out, a picture with few display defects is imparted and further which is excellent in chemical stability without depending on an oblique deposition method or a rubbing method.
    SOLUTION: The liquid crystal alignment layer is characterized by forming a monomolecular film composed of an organic polymer expressed by a general formula (2) on a substrate treated with an organic silicon compound expressed by a general formula (1), (YR)
    p SiX
    4-p , which is chemically fixed by the reaction between Y of the organic silicon compound and W of the organic polymer. In addition, in the general formulas (1) and (2), Y and W are groups which react with each other via active hydrogen donation and acceptance, R is a divalent organic group, X is a hydrolyzable group, R
    1 and R
    2 are (a) hydrogen atom(s) or (a) methyl group(s), Z
    1 and Z
    2 are -NH-, -O- or -S-, n is an integer of 2-20 and p, a, b and m are specified integers.
    COPYRIGHT: (C)2004,JPO

    N-POLYFLUOROALKYL-SUBSTITUTED (METH)ACRYLAMIDE AND POLYMER MEMBRANE USING ITS POLYMER

    公开(公告)号:JPH10139747A

    公开(公告)日:1998-05-26

    申请号:JP31295396

    申请日:1996-11-08

    Inventor: MIYASHITA TOKUJI

    Abstract: PROBLEM TO BE SOLVED: To obtain the new compound useful for single molecular films, accumulated films, polymer films, fluorinated carbon-insoluble water-repelling polymer thin films, UV light resists, etc., improved in physical strengths, stability and uniformity and excellent in lubricity and water repellency. SOLUTION: A compound of the formula [(n) is 0-2; R is H, methyl; R is a 1-14C perfluoroalkyl], e.g. N-1H,1H-heptafluorobutylacrylamide. The compound of the formula is obtained by reacting a 2-(perfluoroalkyl)alkyl iodide with sodium azide, reducing the obtained corresponding 2-(perfluoroalkyl) alkylamide with lithium aluminum hydride, and subsequently reacting the obtained polyfluoroalkylamine with acrylic acid chloride in the presence of a catalyst. The obtained N-polyfluoroalkyl-substituted acrylamide can give polymers excellent in mechanical strengths, solvent resistance, corrosion resistance and plasma resistance.

    CROSSLINKING-GROUP-CONTAINING COPOLYMER BUILDUP FILM AND RESIST MATERIAL CONTAINING THE SAME

    公开(公告)号:JPH09302041A

    公开(公告)日:1997-11-25

    申请号:JP14088196

    申请日:1996-05-09

    Applicant: CHISSO CORP

    Abstract: PROBLEM TO BE SOLVED: To obtain a copolymer capable of being built up by forming a copolymer comprising two specified types of structural units in a specified ratio and to obtain a buildup film made from this copolymer, and a light- or electron- beam-crosslinked resist material made of this film. SOLUTION: Sixty (60) to 95mol% N-alkyl-substituted acrylamide and 4- vinylpyridine are polymerized in an aromatic hydrocarbon solvent to obtain a copolymer comprising structural units represented by formula I (wherein m is 10-14) (step a). The copolymer obtained in step a is dissolved in an alcohol, an excess of an ω-halogen-alkylalcohol is added to the solution to quaternize the pyridine part, the obtained copolymer solution is poured into a poor solvent to obtain a copolymer comprising structural units represented by formula II (wherein n is 1-12; and X is a halogen or ClO4 ) (step b). The copolymer obtained in step b is esterified to obtain a copolymer containing 60-95% structural units represented by formula I and 40-5wt.% structural units represented by formula II and having a number-average molecular weight of 3,000-100,000 (step c).

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