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    • 64. 发明公开
    • 나노채널 염료감응형 태양전지 광전극 및 이의 제조 방법
    • 纳米通道染料敏化太阳能电池光电极及其制造方法
    • KR1020170115131A
    • 2017-10-17
    • KR1020160041016
    • 2016-04-04
    • 한국생산기술연구원
    • 송신애김기영정용철이상호황준영오주영
    • H01G9/20H01L31/0216H01L31/18
    • Y02E10/542
    • 본발명은나노채널염료감응형태양전지광전극, 이의제조방법및 상기광전극을포함하는염료감응형태양전지에관한것으로서, 구체적으로광전극필름을위한나노 TiO페이스트제조시소성후 열분해를통해나노채널을형성할수 있는폴리스티렌(polystyrene, PS) 비드를함께넣어 TiO-PS 페이스트를제조하여광전극형성을위한소성과정에서 PS 비드는열분해되어그 자리에나노채널을형성하게되고형성된나노채널을통해액체전해질이 TiO광전극내부로잘 흡수되어광전극 TiO/염료/전해질간의접촉면적을증가하도록염료감응형태양전지의셀 성능을현저히향상시킬수 있는방법에관한것이다.
    • 形成本发明通过纳米的TiO糊制备跷跷板seonghu热解的光电极膜的纳米通道具体地说,它涉及一种银信道的染料敏化型正电位蜡电极,其制造方法和包含该光电极的染料敏化太阳能电池 通过将聚苯乙烯(PS)珠粒放置在一起,在烧制过程中PS珠粒被热解以形成纳米通道以形成TiO-PS糊剂。 大家都吸收到光电极,该sikilsu显著改善了染料敏化太阳能电池的电池性能,从而提高光电极的TiO /染料/电解质之间的接触面积的方法。
    • 69. 发明公开
    • 다공성친수성기재를 이용한 마이크로 유체 채널 검사키트 및 이의 제조방법
    • 微流道通道检测套件及其制造方法
    • KR1020140036827A
    • 2014-03-26
    • KR1020120103429
    • 2012-09-18
    • 한국생산기술연구원
    • 유준호이상호강희석강경태황준영
    • G01N35/08G01N31/22G01N21/78
    • The present invention relates to a microfluidic channel detection kit and a manufacturing method thereof and, especially, to a microfluidic channel detection kit using porous hydrophilic materials capable of forming a microfluidic channel for increasing productivity and reducing manufacturing costs by cutting the porous hydrophilic materials, attaching the cut porous hydrophilic materials and forming a hydrophobic wall through a printing process and a manufacturing method thereof. The microfluidic channel detection kit using porous hydrophilic materials of the present invention comprises: a hydrophobic lower film; porous hydrophilic materials which have a constant thickness and are attached to the upper face of the lower film; and a reaction agent sprayed on one end of the porous hydrophilic material. The porous hydrophilic material forms a microfluidic channel for moving test samples of a liquid phase absorbed form the other end to one end coated with the reaction agent.
    • 本发明涉及一种微流体通道检测试剂盒及其制造方法,特别涉及使用能够形成微流体通道的多孔亲水材料的微流体通道检测试剂盒,用于通过切割多孔亲水材料来提高生产率并降低制造成本,附着 切割的多孔亲水材料并通过印刷方法形成疏水壁及其制造方法。 使用本发明的多孔亲水材料的微流体通道检测试剂盒包括:疏水性下膜; 具有恒定厚度并附着到下膜的上表面的多孔亲水材料; 和喷涂在多孔亲水材料的一端上的反应剂。 多孔亲水材料形成微流体通道,用于将从另一端吸收的液相的测试样品移动到涂覆有反应剂的一端。