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    • 6. 发明申请
    • METHOD FOR IMPROVING THE DURABILITY OF ION INSERTION MATERIALS
    • 提高离子插入材料耐久性的方法
    • WO0171827B1
    • 2002-10-17
    • PCT/US0109007
    • 2001-03-21
    • MIDWEST RESEARCH INST
    • LEE SE-HEETRACY C EDWINCHEONG HYEONSIK M
    • G02F1/153H01M2/16H01M4/48H01M4/485H01M4/66H01M6/18H01M10/0525H01M10/36H01M4/02G02F1/15H01M10/40
    • H01M10/0525G02F1/1533G02F2001/1536H01M2/1673H01M4/485H01M4/66H01M6/18H01M6/183Y10T29/49108
    • The invention provides a method of protecting an ion insertion material from the degradative effects of a liquid or gel-type electrolyte material by deposing a protective, solid ion conducting, electrically insulating, layer between the ion insertion layer and the liquid or gel-type electrolyte material. The invention further provides liquid or gel-type electrochemical cells having improved durability having a pair of electrodes, a pair of ion insertion layers sandwiched between the pair of electrodes, a pair of solid ion conducting layers sandwiched between the ion insertion layers, and a liquid or gel-type electrolyte material disposed between the solid ion conducting layers, where the solid ion conducting layer minimizes or prevents degradation of the faces of the ion insertion materials facing the liquid or gel-type electrode material. Electrochemical cells of this invention having increased durability include secondary lithium batteries and electrochromic devices.
    • 本发明提供了一种保护离子插入材料免受液体或凝胶型电解质材料的降解作用的方法,其通过在离子插入层和液体或凝胶型电解质之间沉积保护性固体离子传导电绝缘层 材料。 本发明还提供具有改善的耐久性的液体或凝胶型电化学电池,其具有一对电极,夹在所述一对电极之间的一对离子插入层,夹在所述离子插入层之间的一对固体离子传导层以及液体 或布置在所述固体离子传导层之间的凝胶型电解质材料,其中所述固体离子传导层使面向所述液体或凝胶型电极材料的所述离子插入材料的面的降解最小化或防止其退化。 具有增加的耐久性的本发明的电化学电池包括二次锂电池和电致变色装置。
    • 8. 发明申请
    • OPTICAL HYDROGEN SENSOR
    • 光电传感器
    • WO2009145578A2
    • 2009-12-03
    • PCT/KR2009002849
    • 2009-05-28
    • UNIV SOGANG IND UNIV COOP FOUNDONGA MFG CORPCHEONG HYEONSIKLEE SE-HEESHIM JAE YOUNGLEE JAE DONGJIN JUNG MO
    • CHEONG HYEONSIKLEE SE-HEESHIM JAE YOUNGLEE JAE DONGJIN JUNG MO
    • G01N21/25
    • G01N21/783
    • The present invention relates to an optical hydrogen sensor which comprises: (a) a sensing module including gasochromic thin film; (b) an optical module; and (c) an optical fiber which optically connects the sensing module and optical module. The optical module comprises (i) a light source which generates a light beam, (?) a light splitter which splits the light beam from the light source, (?) a collimating lens which converts the light beam split by the light splitter into parallel lights, (?) a quarter-wave plate which changes the polarizing direction of the parallel light beams having passed through the collimating lens by 90 °, (v) an object lens which collects the light beams that have passed through the quarter-wave plate, and (vi) a detector which detects the light reflected from the sensing module. The present invention applies an optical pickup such as a conventional CD-ROM or DVD-ROM, and consequently the optical hydrogen sensor can be smaller. Furthermore, time and costs needed for manufacture can be greatly cut down if a cheap optical pick-up device is simply changed and applied to the optical hydrogen sensor.
    • 本发明涉及一种光学氢传感器,其包括:(a)包括气相色谱薄膜的感测模块; (b)光学模块; 和(c)将感测模块和光学模块光学连接的光纤。 光学模块包括:(i)产生光束的光源,(?)分离光源的光分离器,(?)将由光分离器分离的光束转换成平行的准直透镜 光(...)将通过准直透镜的平行光束的偏振方向改变90°的四分之一波片,(v)收集通过四分之一波片的光束的物镜 ,和(vi)检测从感测模块反射的光的检测器。 本发明应用诸如常规CD-ROM或DVD-ROM的光学拾取器,因此光学氢传感器可以更小。 此外,如果简单地将便宜的光学拾取装置改变并应用于光学氢传感器,则可以大大减少制造所需的时间和成本。