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    • 5. 发明申请
    • ELECTROCHEMICAL CELL AND PRODUCTION METHOD THEREOF
    • 电化学细胞及其生产方法
    • US20090035642A1
    • 2009-02-05
    • US11995989
    • 2006-04-21
    • Kouki Hatsuda
    • Kouki Hatsuda
    • H01M2/08H01L31/042B05D5/12
    • H01M10/0565G02F1/1303G02F1/153G02F1/161H01G9/038H01G9/08H01G9/155H01G9/2009H01G11/56H01M2/08H01M2/1673H01M10/0413H01M10/0468H01M10/052H01M14/00H01M2300/0085Y02E10/542Y02E60/122Y02E60/13Y02P70/521Y02P70/54Y10T29/49115
    • An object of the present invention is to provide a novel electrochemical cell, and a method of producing the novel electrochemical cell.The method of producing the electrochemical cell according to the present invention is characterized by the following steps. Specifically, in a step A, a counter electrode film 1 and a mold film 2 are crimped. In a step B, a sol-gel precursor 8 is inserted into a pore in the mold film 2 provided on the counter electrode film 1. In a step C, the sol-gel precursor 8 is cooled to form a semi-hardened gel. In a step D, the mold film 2 is peeled off from the counter electrode film 1. In a step E, the semi-hardened gel is cooled to form a gel electrolyte film. In a step F, the sealing film is provided on the counter film 1, with the gel electrolyte film being fitted in the pore of the sealing film 6. In a step G, a working electrode film 7 is crimped on the sealing film 6. In a step H, the stacked films are thermocompression bonded. In a step I, a single electrochemical cell is produced by cutting. Here, the working electrode film 7 and the counter electrode film 1 have flexibility. The electrochemical cell according to the present invention is used for any one of electronic paper, an electric double layer capacitor, a dye sensitization solar battery, a lithium-ion battery, and light control glass.
    • 本发明的目的是提供一种新颖的电化学电池,以及一种生产该新型电化学电池的方法。 根据本发明的电化学电池的制造方法的特征在于以下步骤。 具体地,在步骤A中,对置电极膜1和模制膜2被卷曲。 在步骤B中,将溶胶 - 凝胶前体8插入到设置在对电极膜1上的模制膜2中的孔中。在步骤C中,将溶胶 - 凝胶前体8冷却以形成半硬化凝胶。 在步骤D中,将模具膜2从对电极膜1剥离。在步骤E中,将半硬化凝胶冷却以形成凝胶电解质膜。 在步骤F中,在对置膜1上设置密封膜,凝胶电解质膜嵌入密封膜6的孔中。在步骤G中,将工作电极膜7卷曲在密封膜6上。 在步骤H中,堆叠的膜被热压粘合。 在步骤I中,通过切割生产单个电化学电池。 这里,工作电极膜7和对电极膜1具有柔性。 根据本发明的电化学电池用于电子纸,双电层电容器,染料敏化太阳能电池,锂离子电池和光控玻璃中的任一种。
    • 9. 发明申请
    • LIGHT EMITTING ELEMENT MODULE AND METHOD FOR SEALING LIGHT EMITTING ELEMENT
    • 用于密封发光元件的发光元件模块和方法
    • US20100140654A1
    • 2010-06-10
    • US11996724
    • 2006-03-09
    • Kouki HatsudaHiroshi Samukawa
    • Kouki HatsudaHiroshi Samukawa
    • H01L33/00B29C45/14
    • H01L33/54B29C33/0022B29C43/18B29C43/28B29C43/46B29C2043/3623B41J2/45B41J2/451H01L33/52H01L33/60H01L2224/45144H01L2224/48091H01L2933/005H01L2924/00014H01L2924/00
    • Disclosed is a method for sealing a light-emitting device wherein formation of air bubbles in a light-emitting device module can be prevented by performing no gelation after fitting of a cover member. This method also enables to seal a light-emitting device by using a gel sealing material composed of a gel precursor which uses a solvent. Also disclosed is a light-emitting module formed by such a sealing method. In this method for sealing a light-emitting device, gelation of the gel precursor of a gel sealing material is performed before placing the precursor on the light-emitting device, and thus no gelation is necessary after fitting of a cover member. Consequently, a gel precursor having high viscosity that is difficult to be used in an injection method can be used in this method. Furthermore, a substance which requires use of a solvent can be used as a gel precursor of a gel sealing material. A light-emitting device module with high luminance wherein no air bubbles are included can be obtained by this method.
    • 公开了一种密封发光器件的方法,其中可以通过在安装盖构件之后不进行凝胶化来防止在发光器件模块中形成气泡。 该方法还能够通过使用由使用溶剂的凝胶前体组成的凝胶密封材料来密封发光器件。 还公开了通过这种密封方法形成的发光模块。 在这种密封发光装置的方法中,在将前体放置在发光装置上之前,进行凝胶密封材料的凝胶前体的凝胶化,因此在安装盖部件之后不需要凝胶化。 因此,在该方法中可以使用难以在注射方法中使用的具有高粘度的凝胶前体。 此外,需要使用溶剂的物质可以用作凝胶密封材料的凝胶前体。 通过该方法可以获得不具有气泡的高亮度的发光装置模块。
    • 10. 发明申请
    • Curable Resin Composition
    • 可固化树脂组合物
    • US20090143505A1
    • 2009-06-04
    • US12084707
    • 2007-03-14
    • Hiroshi SamukawaKouki Hatsuda
    • Hiroshi SamukawaKouki Hatsuda
    • C08K5/3417
    • C09D133/08C08F222/1006C08K5/3417C09D133/14H01L33/56C08L2666/28
    • A curable resin composition is provided which has an appropriate viscosity suitable for encapsulating a light-emitting device. The cured product of the curable resin composition has a refractive index equal to or larger than that of epoxy resins, is excellent in heat resistance and light resistance, and has thermal stress relaxation properties. The curable resin composition contains a high refractive index acrylic-based monomer having a refractive index of 1.52 or more and a non-polymerizable carbazole, and further contains a polymerizable carbazole in accordance with need. An acrylate or methacrylate having a fluorene skeleton, a bisphenol-A skeleton, a biphenyl skeleton, a naphthalene skeleton, or an anthracene skeleton is used as the high refractive index acrylic-based monomer.
    • 提供一种具有适合于封装发光装置的适当粘度的可固化树脂组合物。 固化性树脂组合物的固化物的折射率等于或大于环氧树脂的折射率,耐热性和耐光性优异,并且具有热应力松弛性。 固化性树脂组合物含有折射率为1.52以上的高折射率丙烯酸类单体和不可聚合咔唑,并且根据需要还含有可聚合咔唑。 使用具有芴骨架的丙烯酸酯或甲基丙烯酸酯,双酚A骨架,联苯骨架,萘骨架或蒽骨架作为高折射率丙烯酸类单体。